科學(xué)研究:
主要研究方向:
1. 雷達(dá)通信環(huán)境中的波傳播與散射、地物環(huán)境遙感與應(yīng)用技術(shù)
2. 目標(biāo)與環(huán)境光電特性分析及應(yīng)用
3.計(jì)算電磁學(xué)及電磁成像
4. 電磁新材料與天線設(shè)計(jì)
5.空間等離子體探測與信息處理
主要研究領(lǐng)域
長期從事復(fù)雜系統(tǒng)和隨機(jī)介質(zhì)中的電磁波傳播和散射特性研究,開展了非均勻大尺寸參數(shù)球、柱目標(biāo)對平面波和有形波束散射,并在國內(nèi)率先將分形方法用于粗糙背景及大氣湍流中目標(biāo)的雷達(dá)電磁散射,同時一直瞄準(zhǔn)隨機(jī)介質(zhì)中波傳播和散射國際前沿問題和國家在目標(biāo)與環(huán)境特性領(lǐng)域的相關(guān)需求,在隨機(jī)粗糙背景和目標(biāo)復(fù)合電磁散射、逆散射及電磁成像和波傳播研究方向做了較為深入的研究。
1. 電磁(光)波傳播與散射、環(huán)境遙感及成像
實(shí)際地海面電磁散射
目標(biāo)與實(shí)際地海面復(fù)合散射
成像及反演問題
地空鏈路波傳播
2. 目標(biāo)與環(huán)境光電特性分析和應(yīng)用技術(shù)
3. 雷達(dá)與通信中的電波傳播和散射及信息處理
4. 計(jì)算電磁學(xué)及其應(yīng)用
時域、頻域積分方程方法
基于快速多極子的快速算法
時域有限差分方法及其并行化
解析-數(shù)值混合算法;高低頻混合算法
有限元算法
5.新型天線設(shè)計(jì)與電磁新材料
承擔(dān)科研項(xiàng)目情況:
主持國家科技重大專項(xiàng),國家973、863課題、國家自然科學(xué)基金(杰青、重點(diǎn)、面上、青年),國防科技預(yù)研、教育部科技重點(diǎn)等項(xiàng)目40余項(xiàng)。
近幾年年承擔(dān)主要項(xiàng)目:
1. 臨近空間高速飛行器等離子鞘套下信息傳輸理論基礎(chǔ)-動態(tài)等離子鞘套與電磁波相互作用機(jī)理研究,民口973課題
2. 等離子體鞘套及電大尺寸,國家科技重大專項(xiàng)-專項(xiàng)工程基礎(chǔ)理論研究項(xiàng)目
3. 國家重大科技專項(xiàng)-專項(xiàng)工程基礎(chǔ)理論研究項(xiàng)目
4. 目標(biāo)和地海環(huán)境復(fù)合電磁散射理論建模與分析研究,國家杰出青年基金
5. 臨近空間高超聲速飛行器等離子體鞘套與電磁波相互作用機(jī)理及電磁散射理論建模研究,國家自然科學(xué)基金重點(diǎn)項(xiàng)目
6. 實(shí)際地、海背景中目標(biāo)復(fù)合電磁散射特性分析和理論建模研究,教育部高校博士點(diǎn)基金
7. 復(fù)雜形狀復(fù)雜介質(zhì)電大介質(zhì)平臺上天線電磁特性計(jì)算方法研究,教育部高校博士點(diǎn)基金
國家自然科學(xué)基金項(xiàng)目:
1. 實(shí)際復(fù)雜海洋環(huán)境下目標(biāo)的電磁散射與逆散射特征研究
2. 實(shí)際海背景中目標(biāo)的復(fù)合電磁散射與預(yù)報(bào)模型研究
3. 海背景與目標(biāo)復(fù)合模型的電磁散射研究
4. 基于分形的等離子體鞘套湍流隨機(jī)相位屏模擬研究
5. 基于迭代KA與射線理論混合算法的油膜覆蓋海面電磁散射特性研究
教育部等各類科技人才計(jì)劃項(xiàng)目:
1. 高層次創(chuàng)造性人才計(jì)劃第二層次:高等學(xué)校優(yōu)秀青年教師教學(xué)科研獎勵計(jì)劃
留學(xué)回國人員基金
1. 實(shí)際地海雜波電磁散射建模與特征分析研究
2. 空間導(dǎo)彈目標(biāo)散射建模和特征提取研究
3. 海背景與復(fù)合目標(biāo)的電磁散射
國家及有關(guān)部委項(xiàng)目:
1. 大氣波導(dǎo)的
2. 聲波
3. 地海雜波電磁散射
4. 等離子體鞘套下
5. 實(shí)際地、海背景中
6. 二維粗糙表面的生成及
7. 海背景中目標(biāo)
8. 分形幾何在海、地雜波散射中的應(yīng)用
9. 實(shí)際地、海雜波電磁散射特性分析和理論建模研究
10. 非麥克斯韋分布等離子體的非相干散射的理論和實(shí)驗(yàn)研究
11. 大氣環(huán)境預(yù)測與;夹g(shù)的新方法、新技術(shù)研究
國際合作項(xiàng)目和面向應(yīng)用的研究項(xiàng)目:
1. 復(fù)雜粒子的電磁散射的計(jì)算—含核粒子、多粒子體系、非球形粒子的散射計(jì)算
2. 多相流中非球形粒子的測量
3. 空間天氣極區(qū)監(jiān)測業(yè)務(wù)化觀測模式與試驗(yàn)
4. 射線跟蹤模型在3G網(wǎng)絡(luò)小區(qū)規(guī)劃中的適應(yīng)性及算法改進(jìn)研究
5. 超大規(guī)模天線3-D Ray-tracing信道建模
6. 引信近場天線分析設(shè)計(jì)軟件
7. 引信射頻系統(tǒng)設(shè)計(jì)分析軟件
8. 電離層沿場***VHF散射理論和模型
9. 應(yīng)用于寬帶毫米波目標(biāo)仿真系統(tǒng)電磁場分析模型****
教學(xué)與科研成果
獲國家科技進(jìn)步三等獎1項(xiàng),電子部科技進(jìn)步一等獎1項(xiàng)、二等獎1項(xiàng),教育部科技進(jìn)步二等獎1項(xiàng),陜西省科學(xué)技術(shù)二等獎2項(xiàng);出版專著7部,在IEEE Trans. GRS、IEEE Trans. AP、Optics Express、中國科學(xué)等國內(nèi)外刊物發(fā)表論文360余篇;任電子信息科學(xué)與技術(shù)”國家級特色本科專業(yè)負(fù)責(zé)人,主持省級精品課程2門,負(fù)責(zé)省級教改項(xiàng)目2項(xiàng),獲國家教學(xué)成果二等獎1項(xiàng),陜西省教學(xué)成果特等獎1項(xiàng)、一等獎1項(xiàng)、二等獎4項(xiàng)。
發(fā)明專利:
專利情況:
Analysis method and device for propagation characteristics of electromagnetic wave(電波傳播特性的分析方法與裝置),國際(美國)發(fā)明專利PCT/CN2011/ 077215,2012
國家發(fā)明專利授權(quán):
1. 發(fā)明人:郭立新等,基于積分邊界的介質(zhì)粗糙面有限元電磁仿真方法,授權(quán)號:ZL201310180921.6,2016年4月27日
2. 發(fā)明人:郭立新等,基于多區(qū)域模型矩量法的介質(zhì)粗糙面電磁散射仿真方法,授權(quán)號:ZL201310326765.X,2016年6月29日
3. 發(fā)明人:郭立新等,基于互易性原理的粗糙面與目標(biāo)復(fù)合電磁散射仿真方法,授權(quán)號:ZL201310512166.7,2016年6月29日
4. 發(fā)明人:鄧敬亞,郭立新等,一種寬帶天線,授權(quán)號:ZL201110170712.4,2013年11月6日
5. 發(fā)明人:王蘭美,郭立新等,錐面共形陣列多參數(shù)聯(lián)合估計(jì)方法,授權(quán)號:ZL201310191348.9,2015年6月17日
國家發(fā)明專利申請:
1. 郭立新等,一種粗糙面微波段雙向反射分布函數(shù)的建模方法,申請?zhí)枺?014100016087.1,申請日:2014年1月14日
2. 郭立新等,一種基于單視圖幾何原理的室內(nèi)環(huán)境重構(gòu)方法,申請?zhí)枺?014100015416.0,申請日:2014年1月14日
3. 郭立新等,基于并行矩量法與物理光學(xué)混合的電磁散射仿真方法,申請?zhí)枺?01410115110.2,申請日:2014年3月26日
4. 郭立新等,用多種高頻電磁散射對大型艦船目標(biāo)進(jìn)行電磁仿真的方法,申請?zhí)枺?01410578738.6,申請日:2014年10月24日
5. 郭立新等,一種電磁場仿真分析方法,申請?zhí)枺?01510061092.9,申請日:2015年2月6日
6. 郭立新等,一維導(dǎo)體粗糙海面與二維導(dǎo)體目標(biāo)的電磁散射仿真方法,申請?zhí)枺?01510063205.9,申請日:2015年2月6日
7. 郭立新等,三維環(huán)境中的建筑物體選擇方法,申請?zhí)枺?01510098811.4,申請日:2015年3月5日
8. 郭立新等,用射線跟蹤算法對不同誤差地圖進(jìn)行電磁仿真的方法,申請?zhí)枺?01510103143.X,申請日:2015年3月9日
9.郭立新等,分層介質(zhì)粗糙面電磁散射系數(shù)的確定方法,申請?zhí)枺?01510107665.7,申請日:2015年3月11日
10. 郭立新等,基于NURS曲面建模的導(dǎo)體目標(biāo)電磁散射仿真方法,申請?zhí)枺?01610533237.5,申請日:2016年7月8日
[1]李金錄,白璐,史慧剛,白敬宇,郭立新. 基于離散光譜貢獻(xiàn)的超燃沖壓發(fā)動機(jī)噴焰紅外光譜輻射預(yù)測方法[P]. CN115062866A,2022-09-16.
[2]李春詠,郭立新,左炎春,劉偉,駱穎,楊程莉,劉松華. 瞬態(tài)矢量輻射傳輸理論箔條云散射處理方法[P]. CN111199097B,2022-09-13.
[3]李娟,郭立新,李科,任澤林,柴水榮,魏儀文,孟肖. 基于迭代物理光學(xué)的粗糙面與多個目標(biāo)復(fù)合散射仿真方法[P]. CN109100692B,2022-09-09.
[4]劉松華,孫明浩,郭立新,朱從寬,史晨鴿. Debye色散等離子體球的渦旋波束電磁散射場計(jì)算方法及系統(tǒng)[P]. CN112287516B,2022-09-06.
[5]郭廣濱,王蕊,郭立新. 一種動態(tài)散射回波仿真方法以及相關(guān)裝置[P]. CN114966580A,2022-08-30.
[6]李金錄,白璐,白敬宇,史慧剛,許月圓,郭立新. 基于矯正函數(shù)的高速飛行器噴焰紅外輻射特性計(jì)算方法[P]. CN114896684A,2022-08-12.
[7]盧雅雯,彭傲,左炎春,郭立新,劉偉,余樂,方爭光,李金本,佘俊杰. 箔條空氣混合介電常數(shù)測量方法、系統(tǒng)、設(shè)備、介質(zhì)及終端[P]. CN113970670B,2022-08-09.
[8]柴水榮,荊秀,李英杰,魏儀文,李科,李娟,鄒宇峰,何振祥,朱方胤,郭立新. 一種三維含氣泡海面聲散射特性分析方法、裝置及存儲介質(zhì)[P]. CN114880837A,2022-08-09.
[9]郭廣濱,郭立新,王蕊,劉偉,賈春剛. 基于時域回波散射模型的雷達(dá)圖像快速獲取方法和裝置[P]. CN114624666A,2022-06-14.
[10]郭立新,田天宇,劉忠玉,董江波,劉瑋,齊航,劉偉. 一種信道特性分析方法、系統(tǒng)、介質(zhì)、設(shè)備及處理終端[P]. CN114448531A,2022-05-06.
[11]鄧敬亞,譚重浩,孫冬全,郭立新,雒艷. 一種新型雙端口饋電四頻段濾波雙工天線[P]. CN111129731B,2022-03-29.
[12]劉忠玉,易志豪,郭立新,董江波,劉瑋,齊航,李娟. 一種電參數(shù)預(yù)設(shè)和參數(shù)校正方法及系統(tǒng)[P]. CN114239227A,2022-03-25.
[13]劉忠玉,李泉青,郭立新,王平. 一種海環(huán)境無線信道仿真方法、系統(tǒng)、介質(zhì)、設(shè)備及終端[P]. CN114244459A,2022-03-25.
[14]趙欣瑜,李金本,左炎春,劉偉,郭立新,楊昊嘉,劉迎澳,盧雅雯. 導(dǎo)軌式外場目標(biāo)、環(huán)境雷達(dá)特征獲取方法及系統(tǒng)[P]. CN114167365A,2022-03-11.
[15]楊昊嘉,余樂,左炎春,劉偉,郭立新,趙欣瑜,盧雅雯,劉迎澳. 基于四軸插絲機(jī)的可控箔條云模型制作方法及控制系統(tǒng)[P]. CN114167810A,2022-03-11.
[16]孫冬全,陳翔,鄧敬亞,郭立新,魏兵. 一種雙間隙電磁屏蔽系統(tǒng)及其設(shè)計(jì)方法、微波電路[P]. CN112469258B,2022-03-01.
[17]王蕊,郭廣濱,郭立新,張可佳,廖雷. 基于多層背景與目標(biāo)的時域回波模型的目標(biāo)識別方法[P]. CN114076923A,2022-02-22.
[18]王蕊,郭立新,郭廣濱,詹紹能,廖雷,張可佳. 一種基于多頻回波數(shù)據(jù)實(shí)現(xiàn)大型復(fù)雜目標(biāo)分類識別的方法[P]. CN114076924A,2022-02-22.
[19]左炎春,郭立新,劉偉,劉松華. 一種基于支持向量機(jī)算法的二維箔條分布特性識別方法[P]. CN110533069B,2022-02-11.
[20]孫冬全,陳翔,崔萬照,郭立新,魏兵. 三維非接觸金屬格柵式電磁超系統(tǒng)及設(shè)計(jì)方法、微波電路[P]. CN113987607A,2022-01-28.
[21]鄧敬亞,白陶龍,孫冬全,雍婷,郭立新. 一種具有濾波功能的平面喇叭天線[P]. CN111009732B,2022-01-25.
[22]盧雅雯,彭傲,左炎春,郭立新,劉偉,余樂,方爭光,李金本,佘俊杰. 一種箔條空氣混合介電常數(shù)測量方法[P]. CN113970670A,2022-01-25.
[23]鄧敬亞,趙小斐,尹佳媛,孫冬全,劉龍,郭立新,馬曉華,郝躍. 基于堆疊蘑菇型電磁帶隙結(jié)構(gòu)封裝的懸置線間隙波導(dǎo)[P]. CN113131164B,2022-01-14.
[24]楊程莉,郭立新,左炎春,劉偉,李春詠,駱穎,劉松華. 矢量輸運(yùn)理論計(jì)算海背景箔條云散射方法[P]. CN111123225B,2022-01-04.
[25]羅熹,郭立新,韓一平,劉偉,左彥春. 基于快速相位插值的自旋空間碎片目標(biāo)ISAR二維成像方法[P]. CN113466859A,2021-10-01.
[26]鄧敬亞,孫冬全,羅瑞清,雒艷,雍婷,郭立新,張小苗. 小型化加載慢波結(jié)構(gòu)的H面喇叭天線、雷達(dá)、通信系統(tǒng)[P]. CN111129724B,2021-09-28.
[27]董春雷,孟肖,于宗良,郭立新. 一種基于電磁散射驅(qū)動的PD引信回波信號分析方法[P]. CN113433525A,2021-09-24.
[28]鄧敬亞,趙小斐,尹佳媛,孫冬全,劉龍,郭立新,馬曉華,郝躍. 基于堆疊蘑菇型電磁帶隙結(jié)構(gòu)封裝的懸置線間隙波導(dǎo)[P]. CN113131164A,2021-07-16.
[29]鄧敬亞,孫冬全,王竹君,袁丹丹,郭立新. 一種具有慢波效應(yīng)的基片集成槽間隙波導(dǎo)傳輸線[P]. CN111082194B,2021-07-02.
[30]魏儀文,李佳敏,高孟言,柴水榮,郭立新. 一種計(jì)算蜂窩復(fù)合材料目標(biāo)電磁散射的方法[P]. CN112986943A,2021-06-18.
[31]鄧敬亞,李明杰,孫冬全,雍婷,雒艷,郭立新. 一種基于微帶脊間隙波導(dǎo)的雙頻三階帶通濾波器[P]. CN111244587B,2021-06-15.
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[110]王平,陳鴻燕,程靜思,李招靈,郭立新,楊銀堂,張志勇. 一種適于研究ZnMgO/ZnO異質(zhì)結(jié)中合金群散射的Monte Carlo模擬方法[P]. CN106682400A,2017-05-17.
[111]王平,傅慧華,劉洋,王悅,張艷,郭立新. 基于指數(shù)韋伯和APD的PPM無線光通信系統(tǒng)的誤碼率計(jì)算方法[P]. CN106685523A,2017-05-17.
[112]郭立新,劉松華,周新博. 三維粗糙目標(biāo)雷達(dá)散射截面的仿真方法[P]. CN106355641A,2017-01-25.
[113]郭立新,劉蛟,何紅杰,馮恬恬. 基于NURBS曲面建模的導(dǎo)體目標(biāo)電磁散射仿真方法[P]. CN106156431A,2016-11-23.
[114]李江挺,孫祥,郭立新,楊少飛,王志軍,周新博. 人工空間等離子體中的電波傳播仿真方法[P]. CN105912752A,2016-08-31.
[115]王平,郭馨璐,宋振杰,何靜芳,郭立新,楊銀堂. 一種MgZnO基MSM紫外光探測器等效電路與擴(kuò)頻方法[P]. CN105787207A,2016-07-20.
[116]李江挺,楊少飛,郭立新,孫祥,王志軍. 高超聲速湍流中電磁波傳播仿真方法[P]. CN105740530A,2016-07-06.
[117]郭立新,柴水榮,王蕊,徐潤汶,魏儀文. 基于互易性原理的粗糙面與目標(biāo)復(fù)合電磁散射仿真方法[P]. CN103593510B,2016-06-29.
[118]郭立新,魏儀文,徐潤汶,柴水榮. 基于多區(qū)域模型矩量法的介質(zhì)粗糙面電磁散射仿真方法[P]. CN103400004B,2016-06-29.
[119]李江挺,楊少飛,郭立新,孫祥,王志軍,周新博. 一種燒蝕飛行器表面的電磁散射仿真方法[P]. CN105574296A,2016-05-11.
[120]郭立新,徐潤汶,柴水榮,魏儀文,李科. 基于積分邊界的介質(zhì)粗糙面有限元電磁仿真方法[P]. CN103279600B,2016-04-27.
[121]雷前召,郭立新,吳家驥,董康軍,張修興,韓小衛(wèi),王菊霞,吳振森,石二壯. 一種對海上運(yùn)動目標(biāo)的高頻天波雷達(dá)的快速檢測方法[P]. CN105137403A,2015-12-09.
[122]王平,陳群曲,劉寧,郭立新,楊銀堂. 一種減少處理器寄存器文件的寫端口數(shù)目的方法[P]. CN102662629B,2015-09-30.
[123]郭立新,李科,王笑笑,李娟,王蕊,柴水榮,魏儀文. 分層介質(zhì)粗糙面電磁散射系數(shù)的確定方法[P]. CN104750917A,2015-07-01.
[124]王蘭美,郭立新,王桂寶,曾操,陳智海. 錐面共形陣列多參數(shù)聯(lián)合估計(jì)方法[P]. CN103278796B,2015-06-17.
[125]郭立新,汪昊. 三維環(huán)境中的建筑物體選擇方法[P]. CN104680581A,2015-06-03.
[126]郭立新,呂博,孫杰晶. 用射線跟蹤算法對不同誤差地圖進(jìn)行電磁仿真的方法[P]. CN104679957A,2015-06-03.
[127]郭立新,李昌龍,賈春剛. 一種電磁場仿真分析方法[P]. CN104573286A,2015-04-29.
[128]郭立新,朱正英,何紅杰. 一維導(dǎo)體粗糙海面與二維導(dǎo)體目標(biāo)的電磁散射仿真方法[P]. CN104573289A,2015-04-29.
[129]沈海明,呂寶起,石光敏,張昌民,李平舟,郭立新. 一種提線木偶戲表演設(shè)備控制方法[P]. CN103272390B,2015-04-08.
[130]郭立新,范天奇. 用多種高頻電磁散射對大型艦船目標(biāo)進(jìn)行電磁仿真的方法[P]. CN104318021A,2015-01-28.
[131]郭立新,劉蛟,常偉,王蕊,孟肖,李科. 基于并行矩量法與物理光學(xué)混合的電磁散射仿真方法[P]. CN103870654A,2014-06-18.
[132]郭立新,陶維,劉忠玉,胡曉蕾. 一種基于單視圖幾何原理的室內(nèi)環(huán)境重構(gòu)方法[P]. CN103763047A,2014-04-30.
[133]郭立新,茍雪銀,張連波. 一種粗糙面微波段雙向反射分布函數(shù)的建模方法[P]. CN103699810A,2014-04-02.
[134]郭立新,柴水榮,王蕊,徐潤汶,魏儀文. 基于互易性原理的粗糙面與目標(biāo)復(fù)合電磁散射仿真方法[P]. CN103593510A,2014-02-19.
[135]郭立新,魏儀文,徐潤汶,柴水榮. 基于多區(qū)域模型矩量法的介質(zhì)粗糙面電磁散射仿真方法[P]. CN103400004A,2013-11-20.
[136]鄧敬亞,郭立新,尹應(yīng)增,李江挺,劉松華,劉偉,李娟,王蕊. 一種寬帶天線[P]. CN102354806B,2013-11-06.
[137]沈海明,呂寶起,石光敏,張昌民,李平舟,郭立新. 一種提線木偶戲表演設(shè)備及控制系統(tǒng)和控制方法[P]. CN103272390A,2013-09-04.
[138]郭立新,徐潤汶,柴水榮,魏儀文,李科. 基于積分邊界的介質(zhì)粗糙面有限元電磁仿真方法[P]. CN103279600A,2013-09-04.
[139]王蘭美,郭立新,王桂寶,曾操,陳智海. 錐面共形陣列多參數(shù)聯(lián)合估計(jì)方法[P]. CN103278796A,2013-09-04.
[140]王平,陳群曲,劉寧,郭立新,楊銀堂. 一種減少處理器寄存器文件的寫端口數(shù)目的方法[P]. CN102662629A,2012-09-12.
[141]王平,陳群曲,劉寧,郭立新,楊銀堂. 用于片上多核并發(fā)多線程處理器的指令包及其操作方法[P]. CN102629192A,2012-08-08.
[142]鄧敬亞,郭立新,尹應(yīng)增,李江挺,劉松華,劉偉,李娟,王蕊. 一種寬帶天線[P]. CN102354806A,2012-02-15.
論文專著:
出版專著:
[1] 郭立新,王蕊,吳振森編著,《隨機(jī)粗糙面散射的基本理論和方法》,科學(xué)出版社,2010年1月。
[2] 郭立新,李江挺,韓旭彪編著,《計(jì)算物理學(xué)》,西安電子科技大學(xué)出版社,2009年9月。
[3] 郭立新,張民,吳振森 著,《隨機(jī)粗糙面與目標(biāo)復(fù)合電磁散射的基本理論和方法》,科學(xué)出版社,2014年10月。
[4] 張民,郭立新,聶丁,周平 著,《海面目標(biāo)雷達(dá)散射特性與電磁成像》,科學(xué)出版社,2015年7月。
發(fā)表英文論文:
[1]王穎哲,王茂森,化寧,陳凱,何志敏,鄭雪峰,李培咸,馬曉華,郭立新,郝躍.Effects of electrical stress on the characteristics and defect behaviors in GaN-based near-ultraviolet light emitting diodes[J].Chinese Physics B,2022,31(06):781-785.
[2]趙朋程,常超,舒盼盼,郭立新.Dependence of plasma structure and propagation on microwave amplitude and frequency during breakdown of atmospheric pressure air[J].Plasma Science and Technology,2021,23(08):45-53.
[3]王召迎,郭立新,李江挺.Research on phase shift characteristics of electromagnetic wave in plasma[J].Plasma Science and Technology,2021,23(07):4-10.
[4]王召迎,郭立新,李江挺.Attenuation characteristics of obliquely incident electromagnetic wave in weakly ionized dusty plasma based on modified Bhatnagar–Gross–Krook collision model[J].Chinese Physics B,2021,30(04):436-442.
[5]宓珉瀚,張濛,武盛,楊凌,侯斌,周雨威,郭立新,馬曉華,郝躍.High performance InAlN/GaN high electron mobility transistors for low voltage applications[J].Chinese Physics B,2020,29(05):548-551.
[6]宓珉瀚,武盛,楊凌,何云龍,侯斌,張濛,郭立新,馬曉華,郝躍.In-situ SiN combined with etch-stop barrier structure for high-frequency AlGaN/GaN HEMT[J].Chinese Physics B,2020,29(04):490-493.
[7]閆旭,郭立新,程明建,柴水榮.Free-space propagation of autofocusing Airy vortex beams with controllable intensity gradients[J].Chinese Optics Letters,2019,17(04):5-9.
[8]程明建,郭立新,李江挺.Influence of moderate-to-strong anisotropic non-Kolmogorov turbulence on intensity fluctuations of a Gaussian–Schell model beam in marine atmosphere[J].Chinese Physics B,2018,27(05):224-230.
[9]林志宇,陳智斌,張進(jìn)成,許晟瑞,姜騰,羅俊,郭立新,郝躍.Polar Dependence of Threading Dislocation Density in GaN Films Grown by Metal-Organic Chemical Vapor Deposition[J].Chinese Physics Letters,2018,35(02):63-66.
[10]趙朋程,郭立新.Effect of aperture field distribution on the maximum radiated power at atmospheric pressure[J].Chinese Physics B,2017,26(11):328-332.
[11]趙朋程,郭立新.Air breakdown induced by the microwave with two mutually orthogonal and heterophase electric field components[J].Chinese Physics B,2017,26(09):581-585.
[12]趙朋程,郭立新,舒盼盼.Effect of air breakdown on microwave pulse energy transmission[J].Chinese Physics B,2017,26(02):550-554.
[13]傅慧華,王平,王冉冉,劉曉霞,郭立新,楊銀堂.Performance analysis of relay-aided free-space optical communication system over gamma-gamma fading channels with pointing errors[J].Optoelectronics Letters,2016,12(04):294-298.
[14] Tian-Qi Fan, Li-Xin Guo, “A novel OpenGL-based MoM/SBR hybrid method for radiation pattern analysis of an antenna above an electrically large complicated platform”, IEEE Trans. on Antennas and Propagation, Vol.64, No.1, pp.201-209, 2016. (SCI檢索:ISI: 000367952300022)
[15]Chai, Shui-Rong, Guo Li-Xin, “Compressive sensing for monostatic scattering from 3D NURBS geometries”, IEEE Transactions on Antennas and Propagation, Vol.64, No.8, pp.3545-3553, 2016. (SCI檢索: 000384007600029, EI檢索: 20163302711388)
[16] Cheng Mingjian, Guo Lixin, Li Jiangting, Zhang Yixin, “Channel capacity of the OAM-based free-space optical communication links with Bessel–Gauss beams in turbulent ocean”, IEEE Photonics Journal, Vol.8, No.1, 7901411, 2016. (SCI檢索:ISI:000375479300062)
[17] Wei Chen, Lixin Guo, “Research on the FDTD method of electromagnetic wave scattering characteristics in time-varying and spatially nonuniform plasma sheath”, IEEE Trans. on Plasma Science, Vol.44, No.12, pp.3235-3242, 2016.
[18] Zhang Pei, Bai Lu, Wu Zhen-Sen, Guo Li-Xin, “Applying the parabolic equation to tropospheric groundwave propagation”, IEEE Antennas and Propagation Magazine, Vol.58, No.3, pp.31-44, 2016.
[19] Run-Wen Xu, Li-Xin Guo, “A hybrid FEM/MoM technique for 3-D electromagnetic scattering from a dielectric object above a conductive rough surface”, IEEE Geoscience and Remote Sensing Letters, Vol.13, No.3, pp.314-318, 2016.
[20] Rui Wang, Lixin Guo, “Scattering from contaminated rough sea surface by iterative physical optics model”, IEEE Geoscience and Remote Sensing Letters, Vol.13, No.4, pp.500-504, 2016.
[21] Hong-Jie He, Li-Xin Guo, “A multihybrid FE-BI-KA technique for 3-D electromagnetic scattering from a coated object above a conductive rough surfac”, IEEE Geoscience and Remote Sensing Letters, Vol.13, No.12, pp.2009-2013, 2016.
[22] Tian-Qi Fan, Li-Xin Guo, “An improved backward SBR-PO/PTD hybrid method for the backward scattering prediction of an electrically large target”, IEEE Antennas Wireless Propag. Lett., Vol. 15, pp. 512-515, 2016. (SCI檢索: ISI:000372419900017, EI檢索:20161702282791)
[23] Chai Shui-Rong, Guo Li-Xin, “Integration of CS into MoM for efficiently solving of bistatic scattering problems”, IEEE Antennas Wireless Propag. Lett., Vol. 15, pp. 1771-1774, 2016.
[24] P. J. Yang, L. X. Guo, “Polarimetric Doppler spectrum of backscattered echoes from nonlinear sea surface damped by natural slicks”, Journal of Quantitative Spectroscopy and Radiative Transfer, Vol. 184, pp. 193-204, 2016.
[25] P. J. Yang, L. X. Guo, and C. G. Jia, “Electromagnetic scattering and Doppler spectrum simulation of time-varying oil-covered nonlinear sea surface”, Journal of Applied Remote Sensing, Vol. 10, pp.016015, 2016. (SCI檢索: 000370776900001, EI檢索:20160902038200).
[26] Wei Yiwen, Guo Lixin, “Application of multiregion model to EM scattering from a dielectric target above or below a dielectric rough surface”, Waves in Random and Complex Media, Vol.26, No.2, pp.152-167, 2016. (SCI檢索:ISI:000372165900005, EI檢索:20160201794024)
[27] P. J. Yang and L. X. Guo, “Doppler spectrum of polarimetric scattering field from two- dimensional time-varying nonlinear sea surfaces”, Waves in Random and Complex Media, Vol. 26, No.4, pp. 516-534, 2016.
[28]Xu Run-Wen, Guo Li-Xin, He Hong-Jie, “Study on scattering from multil[ant]ayer rough surfaces with an object buried with FEM/PML”, Microwave And Optical Technology Letters, Vol.58, No.2, pp.429-433, 2016.
[29] Chai Shui-Rong, Guo Li-Xin, “Fast analysis of bistatic scattering problems with compressive sensing technique”, Journal of Electromagnetic Waves and Applications, Vol.30, No.10, pp.1755-1762, 2016. (SCI檢索:ISI: 000382887600009, EI檢索:20163202684072)
[30]Cheng M J, Guo L X, Li J, et al. “Propagation of an optical vortex carried by a partially coherent Laguerre– Gaussian beam in turbulent ocean”, Applied Optics, Vol.55, No.17, pp.4642-4648, 2016. (SCI檢索: 0003378074200018)
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[32]趙朋程,郭立新,李慧敏.Effect of microwave frequency on plasma formation in air breakdown at atmospheric pressure[J].Chinese Physics B,2015,24(10):340-343.
[33] Guo Lixin, Xu Runwen, “An efficient multiregion FEM-BIM for composite scattering from an arbitrary dielectric target above dielectric rough sea surfaces”, IEEE Trans. on Geosicence and Remote Sensing, Vol.53, No.7, pp.3885-3896, 2015. (SCI檢索:ISI: 000351461000026, EI檢索:20151300678146)
[34] Xiao Meng, Lixin Guo, Tianqi Fan, “Parallelized TSM-RT method for the fast RCS prediction of the 3D large scale sea surface by CUDA”, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, Vol.8, No.10, pp.4795-4804, 2015. (SCI檢索: 000368904000019, EI檢索: 20155101697080)
[35] Wei Yiwen, Guo Lixin, “Numerical simulation and analysis of the spiky sea clutter from the sea surface with breaking waves”, IEEE Trans. on Antennas and Propagation, Vol.63, No.11, pp.4983-4994, 2015. (SCI檢索:ISI:000367730500039, EI檢索:20154601547233)
[36]曹天,王平,郭立新,楊本圣,李晶,楊銀堂.Average bit error rate of multi-hop parallel decode-and-forward-based FSO cooperative system with the max–min criterion under the gamma–gamma distribution[J].Chinese Optics Letters,2015,13(08):6-10.
[37]王冉冉,王平,曹天,郭立新,楊銀堂.Average bit error rate performance analysis of subcarrier intensity modulated MRC and EGC FSO systems with dual branches over M distribution turbulence channels[J].Optoelectronics Letters,2015,11(04):281-285.
[38]Yang Pengju, Guo Lixin,“Doppler Spectrum Analysis of Time-Evolving Sea Surface Covered by Oil Spills[J].Chinese Physics Letters,2015,32(04):49-52. (SCI檢索:ISI: 000352432800012)
[39] Meng Xiao, Guo Lixin, “An accelerated ray tracing method based on the TSM for the RCS prediction of 3-D large-scale dielectric sea surface”, IEEE Antennas Wireless Propag. Lett., Vol. 14, pp. 233-236, 2015. (SCI檢索: ISI:000349625600030, EI檢索:20150800540978)
[40] Jing-Ya Deng, Li-Xin Guo, “An efficient octree-based MoM-PO method for analysis of antennas on large platform”, IEEE Antennas Wireless Propagation Lett., Vol.14, pp 819-822, 2015. (SCI檢索:ISI:000351750600016, EI檢索:20151400719052)
[41] Cheng Mingjian, Guo Lixin, Zhang Yixin, Scintillationand aperture averaging for Gaussian beams through non- Kolmogorov maritime atmospheric turbulence channels, Optics Express, Vol.23, No.25, pp 32606-32621, 2015. (SCI檢索:ISI:000366687200096)
[42] Wang Rui, Guo Lixin, “A fast PO-PO hybrid method for analysing the Doppler spectrum of a plasma- coated object above a rough sea surface: horizontal polarization”, International Journal of Remote Sensing, Vol.36, No.3, pp. 845-862, 2015.(SCI檢索:ISI:000349639100010)
[43] Wei Yiwen, Guo Lixin, Meng Xiao, “The fast simulation of scattering characteristics from a simplified time varying sea surface”, International Journal of Antennas and Propagation, Volume 2015, Article ID 815913, 8 pages, 2015. (SCI檢索:ISI:000355469500001, EI檢索:20152300908450)
[44] Li, Juan, Guo, Li-Xin, Chai, Shui-Rong, Jiao Yong-Chang, “Electromagnetic scattering from a PEC object above a dielectric rough sea surface by a hybrid PO-PO method”, Waves in Random and Complex Media, Vol.25, No.1, pp 60-74, 2015. (SCI檢索:ISI:000354874800007, EI檢索:20144400139932)
[45] Li Ren-xian, Guo Li-xin, Ding Cun-ying,“Debye series analysis of optical force induced by axicon-generated Bessel beam”, J. of Modern Optics, Vol.62, No.6, pp.493-502, 2015.
[46] Chai, Shui-Rong, Guo, Li-Xin, “A new method based on compressive sensing for monostatic scattering analysis”, Microwave and Optical Technology Letters, Vol.57, No.10, pp.2457-2461, 2015. (SCI檢索:ISI:000360504500055, EI檢索:20153101092996)
[47] Xu R, Guo L X, Meng X, “Scattering from a target above rough sea surface with breaking water wave by an iterative analytic-numerical method”, Progress In Electromagnetics Research M, Vol.41, pp.115-123, 2015. (EI檢索:20150900591622)
[48] P. J. Yang, L. X. Guo, Q. Wang, “Circularly polarized wave scattering from two-dimensional dielectric rough sea surface”, Progress in Electromagnetics Research M, Vol.44, pp.119-126, 2015. (EI檢索:201551011696409)
[49] J. M. Li, L. X. Guo, L. K. Lin, et al., “A new method of tipping calibration for ground-based microwave radiometer in cloudy atmosphere”, IEEE Trans. on Geoscience and Remote Sensing, Vol.52, No.9, pp.5506-5513, 2014. (SCI檢索:ISI:000337171900020, EI檢索:20141617598322)
[50]Xu Runwen, Guo Lixin, “An iterative analytic–numerical method for scattering from a target buried beneath a rough surface”,Chinese Physics B, 2014,23(11):300-305. (SCI檢索:ISI:00034512600032, EI檢索:201448238606)
[51]Guo Lixin,Gou Xueyin, Zhang Lianbo.“Bidirectional reflectance distribution function modeling of one-dimensional rough surface in the microwave band”, Chinese Physics B, ,2014,23(11):306-314. (SCI檢索:ISI:000345124600033, EI檢索:201448239056)
[52] Yunhua Wang, Yanmin Zhang, Haihua Chen, and Lixin Guo, “Effects of atmospheric stability and wind fetch on microwave sea echoes”, IEEE Trans. on Geoscience and Remote Sensing, Vol.52, No.2, pp.929-935, 2014. (SCI檢索:ISI:000328941300012, EI檢索:20140117151363)
[53] Xu Runwen, Guo Lixin, “An efficient hybrid method for scattering from arbitrary dielectric objects buried under a rough surface: TM case”, Optics Express,Vol.22, No.6, pp.6844-6858, 2014. (SCI檢索:ISI:000333579300064; EI檢索:20141417539926)
[54] Fan Tianqi, Guo Lixin, “OpenGL-based hybrid GO/PO computation for RCS of electrically large complex objects”, IEEE Antennas Wireless Propag. Lett., Vol. 13, pp. 666-669, 2014. (SCI檢索:ISI: 000335225500004, EI檢索: 20141917696948)
[55] Xu Runwen, Guo Lixin, “Application of hybrid finite element-boundary integral algorithm for solving electromagnetic scattering from multiple objects over rough sea surface”, International Journal of Antennas and Propagation, Volume 2014, Article ID 301934, 10 pages, 2014. (SCI檢索:ISI:000340772100001; EI檢索:201440079752)
[56] Chungang Jia, Lixin Guo, “Graphics processor unit accelerated finite-difference time domain method for electromagnetic scattering from one-dimensional large scale rough soil surface at low grazing incidence”, Journal of Applied Remote Sensing, Vol. 8, pp. 084795-1-084795-10, 2014. (SCI檢索:ISI:000348676300001)
[57] Chai Shuirong, Guo Lixin, and Wang Rui “PO-PO method for electromagnetic backscattering from a 2D arbitrary dielectric-coated conducting target located above a 1D randomly rough surface: horizontal polarization”, IET Microwaves, Antennas & Propagation, Vol.8, No.15, pp.1340-1347, 2014. (SCI檢索:ISI:000345859700012, EI檢索:20145000309860)
[58] Li Juan, Guo Li-Xin, and Chai Shui-Rong, “Composite electromagnetic scattering from an object situated above rough surface”, Applied Optics, Vol.53, No.35, pp.8189–8196, 2014. (SCI檢索:ISI:000346006300006, EI檢索:20145100350924)
[59] P. J. Yang, L. X. Guo, “Polarimetric scattering from two-dimensional dielectric rough sea surface with a ship-induced Kelvin wake”, International Journal of Antennas and Propagation, Vol. 2016, Article ID2474708, 14 pages, 2016. (SCI檢索: 000369245600001, EI檢索: 20160801997604).
[60] Li Ke, Guo Li-Xin, Li Juan, “Scattering and doppler spectral analysis for a fast-moving target above time-varying lossy dielectric sea surface”, International Journal of Antennas and Propagation, Vol.2016, Article ID8216309, 2016.
[61] Rui Wang, Shui-rong Chai,and Li-xin Guo, “Fast hybrid method for the study on monostatic scattering from plasma-coated target above a rough surface”, International Journal of Antennas and Propagation, vol. 2014, Article ID 762603, 13 pages, 2014. (SCI檢索:ISI:000336155900001, EI檢索:20142317785466)
[62] Sheng Xu, Bei-ChenZhang, Rui-YuanLiu, Li-Xin Guo, “Comparative studies on ionospheric climatological features of NmF2 among the Arctic and Antarctic stations”, Journal of Atmospheric and Solar-Terrestrial Physics, Vol.119, pp.63-70, 2014. (SCI檢索:ISI:000342890100007, EI檢索:20143017991039
[63] Bao-Ke Ma, Li-Xin Guo, Hong-Tao Su, Bei-Chen Zhang, “Research on the ionospheric ion velocity distribution and the incoherent scattering spectra of the radar with the 16-moments approximation for the relaxation collision model”, Optik, Vol.125, pp.75-83, 2014. (SCI檢索:ISI:000329537300016; EI檢索:20134516942774)
[64] Xu R, Guo L X, Meng X., “Analysis of scattering fromdielectric rough surfaces by hybrid FEM/BIE”, Progress In Electromagnetics Research M, Vol.34, pp.107-116, 2014. (EI檢索:20140217175392)
[65] Wei Yiwen, Guo Lixin, “Application of multiregion model to EM scattering from a dielectric rough surface with or without a target above it”, IEEE Trans. on Antennas and Propagation, Vol.61, No.11, pp.5607-5620, 2013. (SCI檢索:ISI:000326832300028, EI檢索:20134817018611)
[66] Deng Jingya, Guo Lixin, “Broadband patch antennas fed by novel tuned loop”, IEEE Trans. on Antennas and Propagation, Vol.61, No.4, pp.2290-2293, 2013. (SCI檢索:ISI:000319830800047, EI檢索:20131616215828)
[67] Li Juan, Guo Lixin, “Composite scattering of a plasma-coated target above dispersive sea surface by the ADE-FDTD method”, IEEE Geoscience and Remote Sensing Letters, Vol. 10, No. 1, pp.5-8, 2013. (SCI檢索:ISI:000310899700001, EI檢索:20123815453843)
[68] Jia Chungang, Guo Lixin, “Time-Domain Physical Optics Method for the analysis of wide-band EM scattering from two-dimensional conducting rough surface”, International Journal of Antennas and Propagation, Vol.2013, Article ID 584260, 9 pages, http://dx.doi.org/10.1155/2013/584260. (SCI檢索:ISI:000325017700001)
[69] Liu Zhongyu, Guo Lixin, “Efficient three-dimensional ray-tracing model for electromagnetic propagation prediction in complex indoor environments”, J. Opt. Soc. Am. A ,Vol. 30, No. 8 pp.1654-1660, 2013. (SCI檢索:ISI: 000322591800024, EI檢索:20133516674555)
[70] Li Ren-xian, Guo Li-xin, et al.,“Scattering of an axicon-generated Bessel beam by a sphere”, Optics Communications, Vol.307, pp.25-31, 2013. (SCI檢索:ISI:000331129600005)
[71] Li Jiangman, Guo Lixin, “A Dual-frequency method of eliminating liquid water radiation to remotely sense cloudy atmosphere by ground-based microwave radiometer”, Progress in Electromagnetics Research, PIER 138, pp.629-645, 2013. (SCI檢索:ISI: 000317963200041, EI檢索:20131716230382)
[72] Liu Zhongyu, Guo Lixin, and Tao Wei, “Full automatic preprocessing of digital map for 2.5D ray tracing propagation model in urban microcellular environment”, Waves in Random and Complex Media, Vol.23, No.3, pp.267-278, 2013. (SCI檢索: 000323370900006, EI檢索: 20133716734664)
[73] Liu Zhongyu, Guo Lixin, and Fan Tianqi., “Microcellular propagation prediction model based on an improved ray tracing algorithm”, J. Opt. Soc. Am. A., Vol.30, No.11, pp.2372-2380, 2013. (SCI檢索: 000327185000027)
[74] Ma Baoke, Guo Lixin, “Statistical characteristics of the multi-path time delay and Doppler shift of a radar wave propagation through the ionosphere”, Progress in Electromagnetics Research, PIER 138, pp.479-497, 2013. (SCI檢索:ISI: 000317963200032, EI檢索:20131516204982)
[75] Li Renxian, Ren Kuanfang, Han Xiang’e, Wu Zhensen, Guo Lixin, Gong Shuxi, “Analysis of radiation pressure force exerted on a biological cell induced by high-order Bessel beams using Debye series”, Journal of Quantitative Spectroscopy and Radiative Transfer, Vol.126, pp.69-77, 2013.
[76] Ma Baoke, Guo Lixin, “Simulated ion velocity distribution and its incoherent scattering spectrum in the high- latitude ionosphere”, Journal of the Korean Physical Soc., Vol.63, No.8, pp.1666-1674, 2013. (SCI檢索:ISI:000326590100025)
[77] Deng Jing Ya, Guo Lixin, “Wideband circularly porlarized suspended patch antenna with indented edge and gap-coupled feed”, Progress in Electromagnetics Research, PIER 135, pp.151-159, 2013. (SCI檢索:ISI:000313890800010)
[78]宋久旭,楊銀堂,王平,郭立新,張志勇.Electronic structures and optical properties of a SiC nanotube with vacancy defects[J].Journal of Semiconductors,2013,34(02):1-5.
[79] Li Jiangting, Guo Lixin, “Research on electromagnetic scattering characteristics of reentry vehicles and blackout forecast model”, J. of Electromagnetic Waves and Applications, Vol.26, No.13, pp.1767-1778, 2012. (SCI檢索:ISI 000308106300013)
[80] Deng Jingya, Guo Lixin, “Dual-band antenna with inserted edge resonators and U-slot DGS”, J. Electromagnetic Waves and Applications, Vol.26, No.10, pp.1292-1299, 2012. (SCI檢索:ISI: 000307846400003)
[81] Wang Anqi, Guo Lixin, “Higher order method of moments for bistatic scattering from 2D PEC rough surface with geometric modeling by NURBS surface”, Progress in Electromagnetics Research, PIER 130, pp.85-104, 2012. (SCI檢索:ISI:000308582900005, EI檢索:20123415356853)
[82] Li Jie, Guo Lixin, “Investigation on scattering from a plasma coated target over rough sea surface using a multi-hybrid method”, Waves in Random and Complex Media, Vol.22, No.3, pp.344-355, 2012. (SCI檢索:ISI:000306509000003, EI檢索:20123215310507)
[83] Li Jie, Guo Lixin, “Multi-hybrid method for Investigation of EM scattering from inhomogeneous object above a dielectric rough surface”, Science in China, Series G: Physics, Mechanics and Astronomy, Vol.55, No.10, pp.1781-1790, 2012. (SCI檢索:ISI:0003089538 00009, EI檢索:20123915468630)
[84] Li Jie, Guo Lixin, “Frequency response of 1D dispersive sea surface by the ADE-FDTD algorithm”, Waves in Random and Complex Media,Vol.22, No.2, pp.305-316, 2012. (SCI檢索:ISI:000306508300011, EI檢索:20121714966771)
[85]周小偉,許晟瑞,張進(jìn)成,黨紀(jì)源,呂玲,郝躍,郭立新.Luminescence of a GaN grain with a nonpolar and semipolar plane in relation to microstructural characterization[J].Chinese Physics B,2012,21(06):524-528.
[86] Zhu Xiaomin, Ren Xincheng, Guo Lixin, “FDTD investigation on electromagnetic scattering of 1D band-limited weierstrass fractal la[ant]yered land surface and a conducting column with rectangular cross-section”, Chinese J. of Computational Physics, Vol.29, No.3, pp.399-405, 2012. (EI檢索:20122815240401)
[87] Ma Baoke, Guo Lixin, Su Hongtao , Zhang Beichen,Hu Hongqiao, “Incoherent scatter spectrum of ionospheric plasma with an anisotropic temperature ion distribution”, Astrophys Space Sci, Vol.340, No.2, pp.237–243, 2012. (SCI檢索:ISI:000305784100004)
[88] Zhang Yabin , Wu Jian, Guo Lixin, Zhao Zhenwei, Lin Leke, Xu Bin, Zhang Rui, “The quasi 3-D ray tracing model in microcellular environment”,Chinese Journal of Radio Science,Vol. 27, No. 5, pp.954-959,2012. (EI檢索:20125015786868)
[89] Yang Chao, Jin Wei, Guo Lixin, “Electromagnetic wave propagation over oil-covered sea surface”, Chin. Phys. Lett., Vol.29, No.7, pp. 074210-1~ 074210-4, 2012. (SCI檢索:ISI: 000306551200034)
[90] Wei Bing, He Qiong, Li Jie, Li Renxian, Guo Lixin, “Transient response of thin wire above a la[ant]yered half-space using TDIE/FDTD hybrid method”, International Journal of Antennas and Propagation, 2012. (SCI檢索:ISI: 000301409600001, EI檢索:20121214876378)
[91] Wei Qun, Guo Lixin, Wei Bing , Yang Ziyuan, “Analysis of optical spectra and SH parameters of V3+ centers in ZnO crystals”, Optical Materials, Vol.34 , No.7, pp.1092-1094, 2012. (SCI檢索:ISI: 000303071500018, EI檢索:20121214873963)
[92] Wei Qun, Brik Mikhail G, Guo Lixin, Wei Bing, “Investigations of g factors for the 2E state of V2+ ions in Al2O3 crystals”, Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, Vol. 97, pp.50-53, 2012. (SCI檢索:ISI: 000310395800008, EI檢索:20123915461960)
[93] Wei Qun , Guo Lixin, Wei Bing, Zhu Xuanmin, “Optical spectra and defect structure for v2 ions in ZnS at low temperature”, Physica B: Condensed Matter, Vol. 407, No. 14, pp.2808-2810, 2012. (SCI檢索:ISI: 000305468000029, EI檢索:20122215063412)
[94] Guo Lixin, Liang Yu, “A study of electromagnetic scattering from conducting targets above and below the dielectric rough surface”, Optics Express, Vol.19, No.7, pp.5785-5801, 2011. (SCI檢索:ISI: 000288852700008, EI檢索:20111413889914)
[95] Liang Yu, Guo Lixin, “The fast EPILE combined with FBM for electromagnetic scattering from dielectric targets above and below the dielectric rough surface”, IEEE Trans. on Geosicence and Remote Sensing, Vol.49, No.10, pp.3892-3905, 2011. (SCI檢索:ISI:000296889000008, EI檢索:20114114412538)
[96]Wang Anqi, Guo Lixin,“Application of multiregion model to the EM scattering from a rough surface with or without a target above it”, Chinese Physics B,2011,20(05):16-26. (SCI檢索:ISI:000290665200001, EI檢索:20112214015364)
[97]Wang Anqi, Guo Lixin,“Electromagnetic scattering from a two-la[ant]yered rough interfaces with a PEC object: vertical polarization”,Chinese Physics B,2011,20(05):27-36. (SCI檢索:ISI: 000290665200002, EI檢索:20112214015365)
[98]Song Jiuxu, Yang Yintang, Liu Hongxia, Guo Lixin, “Negative differential resistance in an (8, 0) carbon/boron nitride nanotube heterojunction”, Journal of Semiconductors,,011,32(04):23-26. (EI檢索:20111913959806)
[99] Wang Rui, Guo Lixin, “Electromagnetic scattering from rough sea surface with PM spectrum covered by an organic film”,Chin. Phys. Lett., Vol.28, No.3, pp.034101-1~034101-4, 2011. (SCI檢索:ISI: 000288120900019)
[100] Li Jie, Guo Lixin, “Electromagnetic scattering from randomly rough surfaces with hybrid FEM/BIE”,Chin. Phys. Lett., Vol.28, No.10, pp.104101-1~104101-4, 2011. (SCI檢索:ISI: 000295975100021)
[101] Wang Ping, Yang Yintang, Liu Zengji, ShangTao, Guo Lixin, “Evaluation of DC I-V characteristics and small signal parameters of 4H-SiC me[ant]tal-semiconductor field effect transistors”, Chinese J. of Computational Physics, Vol.28, No.1, pp.145-151, 2011. (EI檢索:20111313881916)
[102] Guo Lixin, Liang Yu, “A high order integral SPM for the conducting rough surface scattering with the tapered wave incidence-TE case”, Progress in Electromagnetics Research, PIER 114, pp.333-352, 2011. (SCI檢索:ISI:000288534600020, EI檢索:20111313877693)
[103] Guo Lixin, Wang Anqi, “Parallel fast multiple method for electromagnetic scattering from one- dimensional large-scale two-la[ant]yered rough surfaces for large angles of incidence”, IET Microw. Antennas Propag., Vol. 5, No.15, pp.1813-1821, 2011. (SCI檢索:ISI:0002991155 00005)
[104] Li Juan, Guo Lixin, “Investigation on wide-band scattering of a target above randomly rough surface by FDTD method,” Optics Express, Vol.19, No.2, pp.1091-1100,2011.(SCI檢索:ISI:000286314600069, EI檢索:20110413617951)
[105] Deng Jingya, Guo Lixin, “Multi-band antenna using mushroom-shaped self-complementary resonators”, J. Electromagnetic Waves and Applications, Vol.25, No.17-18, pp.2497-2504, 2011. (SCI檢索:ISI: 000299259800018, EI檢索:20115214643899)
[106] Deng Jingya, Guo Lixin, “Narrow band notches for ultra-wideband antenna using electromagnetic band-gap structures”, J. Electromagnetic Waves and Applications, Vol.25, No.17-18, pp.2320-2327, 2011. (SCI檢索:ISI: 000299259800002, EI檢索:20115214643901)
[107] Wang Anqi, Guo Lixin, “Fast numerical method for electromagnetic scattering from an object above a large-scale la[ant]yered rough surface at large incident angle: vertical polarization”, Applied Optics, Vol.50, No.4, pp.500-508, 2011. (SCI檢索:ISI:000286805600028, EI檢索:20110613645370)
[108] Li Jie, Guo Lixin,“Hybrid FE-BI-KA method in analyzing scattering from dielectric object above sea surface”, IET Electronic Letters, Vol.47, No.20, pp.1147-1148,2011. (SCI檢索:ISI:000295375300025)
[109] Li Jie, Wei Bing, He Qiong, Guo Lixin, Ge Debiao, “Time-domain iterative physical optics method for analysis of EM scattering from the target half buried in rough surface: PEC case”, Progress in Electromagnetics Research, Vol. 121, pp. 391-408, 2011. (SCI檢索:ISI:000296979600022, EI檢索:20114714542383 )
[110] Liu Songhua, Guo Lixin, “Negative refraction in an anisotropic me[ant]ta-material with a rotation angle between the principal axis and the planar interface”, Progress in Electromagnetics Research, PIER 115, pp.243-257, 2011.(SCI檢索:ISI:000289884000015, EI檢索:20111813955883)
[111] Liu Zhongyu, Guo Lixin, “A Quasi three-dimensional ray tracing method based on the virtual source tree in urban microcellular environments”, Progress in Electromagnetics Research, PIER 118, pp.397-414, 2011. (SCI檢索:ISI: 000292869000023, EI檢索:20113014183311)
[112] Wei Bing, Zhou Yun, Ge Debiao, Guo Lixin, “A general finite difference time domain method for hybrid dispersive media model”,Waves in Random and Complex Media,Vol.21, No.2, pp.336-347, 2011. (SCI檢索:ISI:000289632700008, EI檢索:20112314035087)
[113] Wei Qun, Guo Lixin, Yang Ziyuan, Wei Bing, Zhang Dongyun, “Studies of the defect structure for V3+ ions in wurtzite structure ZnO”, Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, Vol.82 , No.1, pp.137-139, 2011. (SCI檢索:ISI: 000295956500021, EI檢索:20113814342208)
[114] Wei Qun, Guo Lixin , Yang Ziyuan, Wei Bing, “Spin-spin and spin-other-orbit interactions of spin-Hamiltonian parameters for 3d2(8) Ions in Al2O3 crystals”, Acta Physica Polonica A, Vol.119, No.6, pp.857-859, 2011. (SCI檢索:ISI: 000291836700022, EI檢索:20112414051839)
[115] Wei Qun, Guo Lixin, Yang Ziyuan, Wei Bing, “Studies of the g factors of the ground 4A2 and the first excited 2E state of Cr3+ ions in emerald”, Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, Vol.79 , No.5, pp.1187-1190, 2011. (SCI檢索:ISI: 000293363000049, EI檢索:20112914150832)
[116] Wang Ping, Yang Yintang, Guo Lixin, Shang Tao, Liu Zengji, “Study of the Ohmic contact property of SiC”, Journal of Xidian University, Vol.38, No.4, pp.38-41, 2011. (EI檢索:20113914375368)
[117] Wang Yunhua, Zhang Yanming, Guo Lixin, “Composite electromagnetic scattering from two adjacent finite length cylinders”, ACTA PHYSICA SINICA, Vol.60, No.2, 2011. (SCI檢索:ISI: 000287947000027)
[118] Wei Bing, He Qiong, Li Jie, Ge Debiao, Guo Lixin, “A novel method to calculate transient response of thin-wire structure above the la[ant]yered lossy half-space”, ACTA PHYSICA SINICA, Vol.60, No.10, 2011. (SCI檢索:ISI: 000300718700036)
[119] Liang Yu, Guo Lixin, “The EPILE combined with the Generalized-FBM for analyzing the scattering from targets above and on a rough surface”, IEEE Antennas Wireless Propag. Lett., Vol. 9, pp. 809-813, 2010.(SCI檢索:ISI:000283244600001, EI檢索:20103713224117)
[120] Li Juan, Guo Lixin, “FDTD method investigation on the polar-metric scattering from 2-D rough surface”, Progress in Electromagnetics Research, PIER 101, pp.173-188, 2010.(SCI檢索:ISI: 000275368300012, EI檢索:20101112769915)
[121] Wang Anqi, Guo Lixin, “Numerical simulations of electromagnetic scattering from 2D rough surface: Geometric modeling by NURBS surface”, J. Electromagnetic Waves and Applications, Vol.24, No.10, pp.1315-1328, 2010. (SCI檢索:ISI: 000280517000004, EI檢索:20120614755334 )
[122] Li Juan, Guo Lixin, “FDTD investigation on electromagnetic scattering from two-la[ant]yered rough surfaces”, Applied Computational Electromagnetic Society Journal, Vol.25, No.5, pp.450-457, 2010.(SCI檢索:ISI: 000281450000007, EI檢索:20104313321926)
[123] Qin Santuan, Gong Shuxi, Guo Lixin, “A TDIE/TDPO hybrid method for the analysis of TM transient scattering from two-dimensional combinative conducting cylinders”, Progress in Electromagnetics Research, PIER 102, pp.181-195, 2010. (SCI檢索:ISI:000277342000012, EI檢索:20102012945651)
[124]宋久旭,楊銀堂,劉紅霞,郭立新,張志勇.Electronic transport properties of the armchair silicon carbide nanotube[J].半導(dǎo)體學(xué)報(bào),2010,31(11):15-17.
[125] Liu Wei, Guo Lixin, Wu Zhensen, “Polarimetric scattering from a two-dimensional improved sea fractal surface”, Chinese Physics B,2010,19(07):225-233. (SCI檢索:000280186500035; EI檢索:11484788)
[126] Ren Xincheng, Guo Lixin, Miao Hongmei,“Characteristics of electromagnetic wave transmission coefficient through exponential distribution rough surface of stratified medium”, High Power Laser and Particle Beams, Vol.22, No.1, pp.135-139, 2010. (EI檢索:20100812730981)
[127]Wang Yunhua, Zhang Yanmin, Guo Lixin, “Investigation on the Doppler shifts induced by 1-D ocean surface wave displacements by the first order small slope approximation theory: comparison of hydrodynamic models”, Chinese Physics B,2010,19(07):234-241. (SCI檢索:ISI:000280186500036 ; EI檢索:20104813430346)
[128] Wang Yunhua, Zhang Yanmin,Guo Lixin, “Doppler shifts of backscattering fields from one dimensional linear and nonlinear ocean surface by SSA-II”, Chinese Physics Lett., Vol.27, No.10, pp.104101-1-074103-8, 2010. (SCI檢索:ISI:000282870400023)
[129]Zhang Yanmin, Wang Yunhua, Guo Lixin, “Study of scattering from time-varying Gerstners sea surface using second order small slope approximation”, Chinese Physics B,2010,19(05):264-272. (SCI檢索:ISI:000277372200038; EI檢索:20102212974084)
[130]Yang Chao, Guo Lixin, Wu Zhensen, “Investigation on global positioning system signal scattering and propagation over the rough sea surface”, Chinese Physics B,2010,19(05):245-253. (SCI檢索:ISI:000277372200036, EI檢索:20102212974086)
[131]Guo Lixin, Wang Rui, Wu Zhensen, “Application of the method of equivalent edge currents to composite scattering from the cone-cylinder above a dielectric rough sea surface”,Chinese Physics B, ,2010,19(04):249-260. (SCI檢索:ISI:000276936200040, EI檢索:20101812905025)
[132] Guo Lixin, Li Juan, Zeng Hao,“Bistatic scattering from a three-dimensional object above a two- dimensional randomly rough surface modeled with the parallel FDTD approach”, J. Opt. Soc. Am. A, Vol.26, No.11, pp.2383-2392, 2009. (SCI檢索:ISI: 000272143600026, EI檢索:20094812502108)
[133] Guo Lixin, Wang Anqi, Majun, “Study on EM wave scattering from 2-D target above 1-D large scale rough surface with low grazing incidence by parallel MOM based on PC clusters”, Progress in Electromagnetics Research, PIER89, pp.149-166, 2009. (SCI檢索:ISI:000 265387900011, EI檢索:20090811912499)
[134] Guo Lixin, Wang Yunhua, “Investigation on the electromagnetic scattering of plane wave/ Gaussian beam by adjacent multi-particles”, Progress in Electromagnetics Research B, Vol.14, pp.219-245, 2009.
[135] Wang Rui, Guo Lixin, “Study on electromagnetic scattering from the time-varying lossy dielectric ocean and a moving conducting plate above it”, J. Opt. Soc. Am. A., Vol.26, No.3, pp.517-529, 2009. (SCI檢索:ISI:000264726600007, EI檢索:20091412016779)
[136] Li Juan, Guo Lixin, “Message-passing-interface-based parallel FDTD investigation on the EM scattering from a 1-D rough sea surface using uniaxial perfectly matched la[ant]yer absorbing boundary”, J. Opt. Soc. Am. A., Vol.26, No.6, pp.1494-1502, June 2009. (SCI檢索:ISI:000 267499600020, EI檢索:20093012220335)
[137] Li Juan, Guo Lixin and Zeng Hao,“FDTD investigation on bistatic scattering from two- dimensional rough surface with UPML absorbing condition”,Waves in Random and Complex Media, Vol.19, No.3, pp.418-429, 2009. ( SCI檢索:ISI: 000274750800004, EI檢索:20094912528627)
[138] Ma Jun, Guo Lixin and Zeng Hao,“Study on 1D large scale rough surface scattering at low grazing incident angle by parallel MOM based on PC clusters”, Waves in Random and Complex Media, Vol.19, No.4, pp.585-599, 2009.(SCI檢索:ISI:000274751000002)
[139] Wu Zhensen, Zhang Jinpeng, Guo Lixin, “An improved two-scale model with volume scattering for the dynamic ocean surface”, Progress in Electromagnetics Research, PIER 89, pp.39-56, 2009. (SCI檢索:ISI:000265387900004, EI檢索:20090811912492)
[140]Wang Rui, Guo Lixin, “Hybrid method for investigation of electromagnetic scattering from conducting target above the randomly rough surface”, Chinese Physics B, Vol.18, No.4, pp.1503-1511, 2009. (SCI檢索:ISI:000264290900036, EI檢索:20093012220918)
[141] Wang Rui, Guo Lixin, “Electromagnetic scattering from two-la[ant]yer rough interfaces in the Kirchhoff approximation”, Chinese Physics B, Vol.18, No.8, pp.3422-3430, 2009. (SCI檢索:ISI: 000268802300049, EI檢索:20093512274549)
[142] Li Juan, Guo Lixin, “Investigation of composite electromagnetic scattering from ship-like target on the randomly rough sea surfaces using FDTD method”Chinese Physics B, Vol.18, No.7, pp.2757-2763, 2009. (SCI檢索:ISI: 000267821200022, EI檢索:20093512273363)
[143] Ma Jun, Guo Lixin, “Study of MPI based on parallel MOM on PC clusters for EM-beam scattering by 2-D PEC rough surfaces”, Chinese Physics B, Vol.18, No.8, pp.3431-3437, 2009. (SCI檢索:ISI: 000268802300050, EI檢索:20093512274548)
[144] Li Juan, Guo Lixin, “FDTD investigation on electromagnetic scattering from two-la[ant]yered rough surfaces under UPML absorbing condition”Chin. Phys. Lett., Vol.26, No.3, pp.034101-1~034101-4, 2009. (SCI檢索:ISI:000263601300025)
[145] Wang Rui, Guo Lixin, “Investigation on transient electromagnetic scattering from a randomly roughsurface and the perfectly electric conductor target with an arbitrary cross section above it”, Science in China, Series G: Physics, Mechanics and Astronomy,Vol.52, No.5, pp.665-675, 2009. (SCI檢索:ISI:000265734700002, EI檢索:20092012079509)
[146] Ma Jun, Guo Lixin, “Unification of the Kirchhoff approximation and the method of moment for optical scattering from lossy dielectric Gaussian random rough surface”, Chinese Optics Letters, Vol.7, No.3, pp.259-262., 2009. (SCI檢索:ISI:000266970800026, EI檢索:20092212098305)
[147] Ren Xincheng, Guo Lixin, “Optical wave transmission through slightly Gaussian rough surface of la[ant]yered medium” Chinese J. of Computational Physics, Vol.26, No.3, pp.422-429, 2009. (EI檢索:20092412122846)
[148]Xue Kun, Guo Lixin, “16-moment approximation for ion velocity distribution and its application in calculations of incoherent scattering spectra”, Plasma Science and Technology, Vol.11, No.2, pp.152-158, 2009. (SCI檢索:ISI:000264950900005, EI檢索:20091912072033)
[149] Li Juan, Guo Lixin, “FDTD investigation on the electromagnetic scattering from a target above a randomly rough sea surfaces”, Waves in Random and Complex Media, Vol.18, No.4, pp.641-650, 2008. (SCI檢索:ISI:000259997500007, EI檢索:20084411667312)
[150] Li Juan, Guo Lixin, “FDTD investigation on the bistatic scattering from a target above two-la[ant]yered rough surfaces using UPML absorbing condition”, Progress in Electromagnetics Research, PIER 88, pp.197-211, 2008.(SCI檢索:ISI:000265387800012)
[151] Wang Rui, Guo Lixin, “Numerical simulations of wave scattering from two-la[ant]yered rough surface”, Progress in Electromagnetic Research B, Vol.10, pp.163-175, 2008.
[152] Wang Yunhua, Zhang Yanmin, He Mingxia, and Guo Lixin, “Calculation of electromagnetic scattering from a two-dimensional target in the vicinity of a plane surface by a hybrid method”,J. Opt. Soc. Am. A, Vol. 25, No. 6, pp.1232-1239, 2008. (SCI檢索:ISI: 000257156000003, EI檢索: 20083611516584)
[153] Wu Zhensen, Wei Hongyan, Yang Ruike, Guo Lixin, “Study on scintillation considering inner- and outer-scales for laser beam propagation on the slant path through the atmospheric turbulence, Progress in Electromagnetics Research, PIER 80, pp.277-293, 2008. (SCI檢索:ISI:000253081900014, EI檢索:20081111146129)
[154] Ren Yuchao, Guo Lixin, “Two-frequency mutual coherence function and its applications to pulse scattering by random rough surface”, Science in China, Series G: Physics, Mechanics and Astronomy,Vol.51, No.2, pp.157-164, 2008. (SCI檢索:ISI:000252648100006, EI檢索:20082811356905)
[155] Ren Xincheng, Guo Lixin, “Study on electromagnetic wave transmission from slightly Gaussianrough surface e of la[ant]yered medium”, Chin. Phys. Lett.,. Vol.25, No.1, pp.101-104, 2008. (SCI檢索:ISI: 000252613500028)
[156] Ren Xincheng, Guo Lixin, “Investigation on electromagnetic scattering from rough soil surface of la[ant]yered medium using the small perturbation method”, Chinese Physics B, Vol.17, No.7, pp.2491-2498, 2008. (SCI檢索:ISI000257843000024, EI檢索:20083511483071)
[157] Wang Yunhua, Zhang Yanmin, He Mingxia, Guo Lixin, “Solution of scattering from rough surface with a 2D target above it by a hybrid method based on the reciprocity theorem and the forward-backward method”, Chinese Physics B, Vol.17, No.10, pp.3696-3703, 2008. (SCI檢索:ISI: 000260263800027, EI檢索:20084811739140)
[158] Ren Xincheng, Guo Lixin, “Fractal characteristics investigation on electromagnetic scattering from 2D Weierstrass fractal dielectric rough surface”, Chinese Physics B, Vol.17, No.8, pp.2956-2962, 2008. (SCI檢索:ISI000258480200032, EI檢索:20084811734866)
[159] Guo Lixin, Wang Yunhua, “Study on electromagnetic backscattering and Doppler spectrum of a moving spherical target above time-varying sea surface”, Science in China, Series G: Physics, Mechanics and Astronomy,Vol.51, No.3, pp.269-281, 2008. (SCI檢索:ISI: 000253756000007, EI檢索:20082811356893)
[160] Wang Yunhua, Guo Lixin, Wu Zhensen, “Electromagnetic scattering of Gaussian beam by 2-D targets”,Radio Science, Vol.42, No.4, RS4012, 2007. (SCI檢索:ISI:000248289800001, EI檢索:20094312396830)
[161] F.G. Mitria, R.X. Li, L.X. Guo, “Resonance scattering of a dielectric sphere illuminated by electromagnetic Bessel non-diffracting (vortex) beams with arbitrary incidence and selective polarization”, Annals Physics, 361(2015):120-147. (SCI檢索: ISI:000360418800011)
[162] Ren Yuchao, Guo Lixin, “Scattering from Alpha-stable non-Gaussian distributed surfaces”, Chin. Phys. Lett.,.Vol.24, No.1, pp.97-100, 2007. (SCI檢索:ISI:000243377900027)
[163] Ren Yuchao, Guo Lixin, “A time domain algorithm on the reconstruction of rough surfaces”, Chin. Phys. Lett.,.Vol.24, No.3, pp.702-705, 2007. (SCI檢索:ISI:000244436500031)
[164] Ren Xincheng, Guo Lixin, “Study on optical wave scatteringfrom slightly Gaussianrough surface of la[ant]yered medium”, Chinese Optics Letters, Vol.5, No.10, pp.605-608, 2007. (SCI檢索:ISI:000255024400017, EI檢索:20074710936102)
[165]郭立新,王運(yùn)華,吳振森.Study on the shadowing effect for optical wave scattering from randomly rough surface[J].Chinese Optics Letters,2004(07):431-434.
發(fā)表中文期刊論文:
[1]宋亞童,李爽,李剛剛,顧士忠,王平,郭立新.考慮APD的部分相干光OFDM-UWOC系統(tǒng)性能[J/OL].西安電子科技大學(xué)學(xué)報(bào):1-9[2022-10-05].http://kns.cnki.net/kcms/detail/61.1076.TN.20220830.1614.002.html
[2]關(guān)曉偉,郭立新.拋物方程法預(yù)測復(fù)雜地海環(huán)境中的電波傳播[J/OL].微波學(xué)報(bào):1-7[2022-10-05].http://kns.cnki.net/kcms/detail/32.1493.TN.20220808.1319.003.html
[3]羅熹,郭立新,尚社,宋大偉,李小軍,劉偉.天基分布式雷達(dá)相位估計(jì)與同步方法[J].太赫茲科學(xué)與電子信息學(xué)報(bào),2022,20(04):325-331.
[4]郭立新.“超視距傳播與探測”專題前言[J].電波科學(xué)學(xué)報(bào),2022,37(02):175.
[5]王鶴潼,牛書強(qiáng),施會麗,王平,郭立新,劉忠玉.可見光通信數(shù)字基帶系統(tǒng)設(shè)計(jì)及其FPGA實(shí)現(xiàn)[J].西安電子科技大學(xué)學(xué)報(bào),2022,49(04):31-38.DOI:10.19665/j.issn1001-2400.2022.04.005.
[6]張穎,劉偉,時衛(wèi)莉,郭立新.基于天線方向圖與近場SBR的海面艦船復(fù)合散射研究[J].電波科學(xué)學(xué)報(bào),2022,37(01):1-7.
[7]劉蛟,唐莽,王鑫,陳飛,戎建剛,郭立新.對海作戰(zhàn)場景復(fù)雜電磁環(huán)境仿真技術(shù)研究[J].現(xiàn)代雷達(dá),2021,43(08):28-35.DOI:10.16592/j.cnki.1004-7859.2021.08.005.
[8]李弘祖,郭立新,董春雷,孟肖.基于八叉樹優(yōu)化的MoM-PO/PTD混合算法分析目標(biāo)電磁散射及輻射問題[J].系統(tǒng)工程與電子技術(shù),2021,43(11):3033-3039.
[9]馮杰,郭立新,徐彬,吳健,許正文,趙海生,馬征征.固體火箭噴焰的塵埃等離子體非相干散射研究[J].電波科學(xué)學(xué)報(bào),2021,36(04):511-517+531.DOI:10.13443/j.cjors.2020042102.
[10]何之媛,王蕊,王谷,崔閃,郭立新.基于高頻混合方法的復(fù)雜目標(biāo)與背景復(fù)合電磁散射研究[J].空天防御,2020,3(03):78-82.
[11]李娟,劉銳,郭立新,李科,柴水榮,孟肖.粗糙面上方三維目標(biāo)復(fù)合散射的并行IPO方法研究[J].航空科學(xué)技術(shù),2020,31(06):85-90.DOI:10.19452/j.issn1007-5453.2020.06.014.
[12]李科,何紅杰,郭立新,王蕊.基于FE-BI的介質(zhì)粗糙面上方涂覆目標(biāo)電磁散射特性研究[J].電波科學(xué)學(xué)報(bào),2020,35(02):252-256.DOI:10.13443/j.cjors.2018082401.
[13]左炎春,陳紅偉,劉偉,郭立新.基于箔條擴(kuò)散圖片和SVM的箔條長度識別方法[J].光學(xué)與光電技術(shù),2020,18(02):55-59.DOI:10.19519/j.cnki.1672-3392.2020.02.010.
[14]艾俊強(qiáng),陳如山,陳曉盼,郭琨毅,郭立新,胡俊,黃志祥,金謀平,李懋坤,劉其鳳,陸衛(wèi)兵,沙威,盛新慶,宋朝暉,王曉冰,魏兵,吳語茂,楊明林,殷紅成,朱國強(qiáng).電磁計(jì)算方法研究進(jìn)展綜述[J].電波科學(xué)學(xué)報(bào),2020,35(01):13-25.DOI:10.13443/j.cjors.2019110301.
[15]郭立新,魏儀文,柴水榮.目標(biāo)與復(fù)雜地海面復(fù)合電磁散射研究現(xiàn)狀綜述[J].電波科學(xué)學(xué)報(bào),2020,35(01):69-84.DOI:10.13443/j.cjors.2019090204.
[16]艾俊強(qiáng),陳如山,陳曉盼,郭琨毅,郭立新,胡俊,黃志祥,金謀平,李懋坤,劉其鳳,陸衛(wèi)兵,沙威,盛新慶,宋朝暉,王曉冰,魏兵,吳語茂,楊明林,殷紅成,朱國強(qiáng).電磁計(jì)算十大問題[J].電波科學(xué)學(xué)報(bào),2020,35(01):3-12.DOI:10.13443/j.cjors.2019110401.
[17]曹仲晴,林樂科,郭立新,梁仙靈.渦旋電磁波跨海遠(yuǎn)距離傳播特性研究[J].無線電工程,2019,49(08):724-726.
[18]任新成,朱小敏,郭立新.土壤表面與部分埋藏多目標(biāo)復(fù)合散射的時域有限差分方法[J].計(jì)算物理,2019,36(05):569-576.DOI:10.19596/j.cnki.1001-246x.7920.
[19]吳斌,魏兵,弓明豪,郭立新.基于橢圓交叉算法的人體目標(biāo)定位[J].現(xiàn)代應(yīng)用物理,2019,10(02):34-38.
[20]江曉楠,李輝,郭立新.極區(qū)夏季中層塵埃等離子體密度擾動功率譜分析研究[J].電波科學(xué)學(xué)報(bào),2019,34(02):244-248.DOI:10.13443/j.cjors.2018081301.
[21]郝曉靜,李清亮,郭立新,郭相明.基于氣象衛(wèi)星數(shù)據(jù)的我國沿海懸空波導(dǎo)反演方法初步研究[J].電子學(xué)報(bào),2019,47(03):600-605.
[22]劉穎,郭立新.地下埋藏目標(biāo)與分層粗糙面復(fù)合散射探地雷達(dá)回波特性研究[J].電波科學(xué)學(xué)報(bào),2019,34(01):111-118.DOI:10.13443/j.cjors.2018082001.
[23]郝曉靜,李清亮,郭立新,張玉生.北極大氣波導(dǎo)時空分布研究[J].極地研究,2018,30(04):349-359.DOI:10.13679/j.jdyj.20170041.
[24]孫日東,郭立新,程明建,閆旭,李江挺.貝塞爾高斯光束在各向異性湍流中的傳輸特性[J].光子學(xué)報(bào),2018,47(12):132-139.
[25]王蕊,郭立新,張策.油膜覆蓋的非線性海面電磁散射多普勒譜特性研究[J].物理學(xué)報(bào),2018,67(22):221-231.
[26]鄭曉桐,郭立新,程明建,李江挺.基于重復(fù)編碼的海上可見光通信大氣信道建模[J].物理學(xué)報(bào),2018,67(21):206-212.
[27]董群鋒,郭立新,李應(yīng)樂,王明軍.沙塵暴對太赫茲波傳播的影響[J].太赫茲科學(xué)與電子信息學(xué)報(bào),2018,16(04):599-602.
[28]徐潤汶,郭立新,宋小弟.隨機(jī)粗糙面電磁散射特性的FEM/PML研究[J].微波學(xué)報(bào),2018,34(S1):29-32.
[29]楊超,陳競,王一旨,郭立新.雷達(dá)海雜波反演大氣波導(dǎo)的改進(jìn)回溯搜索算法[J].系統(tǒng)工程與電子技術(shù),2018,40(08):1743-1749.
[30]李可可,劉偉,郭立新,劉廣君.VRT和M-G模型對含泡沫海面電磁散射特性的修正效應(yīng)研究[J].航空兵器,2018(03):53-57.DOI:10.19297/j.cnki.41-1228/tj.2018.03.009.
[31]王強(qiáng),郭立新,劉忠玉.粗糙海面與上方多目標(biāo)瞬態(tài)電磁散射混合算法[J].西安電子科技大學(xué)學(xué)報(bào),2018,45(05):57-63.
[32]董群鋒,郭立新,李應(yīng)樂,王明軍,張希,郗艷華.太赫茲波在均勻磁化等離子體中的傳播特性[J].太赫茲科學(xué)與電子信息學(xué)報(bào),2018,16(01):38-42.
[33]趙華,郭立新.分形粗糙表面涂覆目標(biāo)太赫茲散射特性[J].雷達(dá)學(xué)報(bào),2018,7(01):91-96.
[34]成琦,郭立新,張丹,李慧敏,李江挺.考慮電子吸附效應(yīng)的低電離層加熱研究[J].地球物理學(xué)報(bào),2018,61(01):43-51.
[35]唐茜,郭立新,趙葆常.一種用于大氣超光譜探測的異型雙H-V消偏器[J].光譜學(xué)與光譜分析,2017,37(12):3913-3919.
[36]郝曉靜,李清亮,郭立新,韓杰,郭相明.基于MM5V3的大氣波導(dǎo)預(yù)報(bào)可靠性和準(zhǔn)確度分析[J].電波科學(xué)學(xué)報(bào),2017,32(06):725-734.DOI:10.13443/j.cjors.2017072001.
[37]關(guān)曉偉,郭立新,王亞姣,李清亮.一種結(jié)合數(shù)字高程地圖的射線跟蹤建模方法[J].西安電子科技大學(xué)學(xué)報(bào),2018,45(03):35-39+135.
[38]張力,林志宇,羅俊,王樹龍,張進(jìn)成,郝躍,戴揚(yáng),陳大正,郭立新.具有p-GaN島狀埋層耐壓結(jié)構(gòu)的橫向AlGaN/GaN高電子遷移率晶體管[J].物理學(xué)報(bào),2017,66(24):251-256.
[39]王寧,郭立新,趙振維,丁宗華,林樂科.中國東南沿海地區(qū)大氣反常結(jié)構(gòu)遙感初探[J].遙感學(xué)報(bào),2017,21(06):948-954.
[40]唐茜,郭立新,趙葆常.浸入式光柵譜線特性(英文)[J].紅外與毫米波學(xué)報(bào),2017,36(05):569-574.
[41]王強(qiáng),郭立新.時域混合算法在一維海面與艦船目標(biāo)復(fù)合電磁散射中的應(yīng)用[J].物理學(xué)報(bào),2017,66(18):47-54.
[42]郭廣濱,郭立新.時域物理光學(xué)后向散射近場線積分表達(dá)式[J].電波科學(xué)學(xué)報(bào),2017,32(04):385-390.DOI:10.13443/j.cjors.2017062201.
[43]趙華,郭立新.高斯粗糙表面涂覆目標(biāo)太赫茲散射特性[J].西安電子科技大學(xué)學(xué)報(bào),2018,45(01):23-29.
[44]王寧,郭立新,趙振維,丁宗華,林樂科.中低緯電離層F層峰高和厚度的變化特征分析[J].地球物理學(xué)報(bào),2017,60(04):1268-1275.
[45]陳偉,郭立新,李江挺,淡荔.時空非均勻等離子體鞘套中太赫茲波的傳播特性[J].物理學(xué)報(bào),2017,66(08):86-92.
[46]彭懷云,王元新,潘威炎,郭立新,張紅旗,陳宇.鐵質(zhì)長旋轉(zhuǎn)橢球殼體在均勻恒定磁場中產(chǎn)生的感應(yīng)場[J].電子與信息學(xué)報(bào),2017,39(05):1250-1255.
[47]任新成,田煒,劉鵬,郭立新.分形大地土壤表面與部分埋藏目標(biāo)復(fù)合散射特性[J].強(qiáng)激光與粒子束,2017,29(02):44-50.
[48]董群鋒,郭立新,王立,張輝,王明軍.沙塵媒質(zhì)微波衰減特性研究[J].裝備環(huán)境工程,2016,13(06):85-89.
[49]王夫蔚,郭立新,龔書喜.采用可重構(gòu)結(jié)構(gòu)型吸波材料的天線RCS減縮方法[J].西安電子科技大學(xué)學(xué)報(bào),2017,44(02):42-46+94.
[50]程明建,郭立新,張逸新.拉蓋爾-高斯波束在弱湍流海洋中軌道角動量傳輸特性變化[J].電波科學(xué)學(xué)報(bào),2016,31(04):737-742.DOI:10.13443/j.cjors.2015121501.
[51]孟肖,郭立新,黃青青,李娟.基于并行雙尺度射線追蹤的海面電磁散射計(jì)算[J].電波科學(xué)學(xué)報(bào),2016,31(04):725-730.DOI:10.13443/j.cjors.2015072502.
[52]賈春剛,郭立新,劉偉.基于GPU的并行FDTD方法在二維粗糙面散射中的應(yīng)用[J].電波科學(xué)學(xué)報(bào),2016,31(04):683-687.DOI:10.13443/j.cjors.2015111801.
[53]趙朋程,郭立新,李慧敏.110GHz高功率微波在大氣擊穿等離子體中的傳輸、反射和吸收[J].電波科學(xué)學(xué)報(bào),2016,31(03):512-515.DOI:10.13443/j.cjors.2015072501.
[54]賈春剛,郭立新,劉偉,尤立志.并行FDTD方法在海面及其上方漂浮目標(biāo)復(fù)合電磁散射中的應(yīng)用[J].電波科學(xué)學(xué)報(bào),2016,31(01):116-122.DOI:10.13443/j.cjors.2015010501.
[55]賈春剛,郭立新,李娟.基于FDTD方法海面與上方三維漂浮目標(biāo)復(fù)合電磁散射的研究[J].航空兵器,2015(06):8-13.DOI:10.19297/j.cnki.41-1228/tj.2015.06.002.
[56]白璐,張沛,吳振森,郭立新.海上對流層大氣波導(dǎo)頂部電磁盲區(qū)研究[J].電波科學(xué)學(xué)報(bào),2016,31(02):278-283.DOI:10.13443/j.cjors.2015052201.
[57]張雅彬,吳健,郭立新,徐彬,薛昆,趙海生,許正文.一種電離層場向不規(guī)則體各向異性散射模型[J].空間科學(xué)學(xué)報(bào),2015,35(05):549-555.
[58]田煒,任新成,郭立新.海面與其上方雙矩形截面柱復(fù)合散射的混合算法研究[J].物理學(xué)報(bào),2015,64(17):96-102. (SCI檢索:ISI:000362976900012,EI檢索:20153801295317)
[59]魏儀文,郭立新,殷紅成.海洋內(nèi)波對海面電磁散射特性的影響分析[J].雷達(dá)學(xué)報(bào),2015,4(03):326-333.
[60]柴水榮,郭立新.基于壓縮感知的一維海面與二維艦船復(fù)合后向電磁散射快速算法研究[J].物理學(xué)報(bào),2015,64(06):43-50. (SCI檢索:ISI:000351752600002,EI檢索:20151400700036)
[61]張雅彬,吳健,郭立新,徐彬,薛昆,趙海生,許正文.電離層沿場不規(guī)則體幾何散射模型[J].電波科學(xué)學(xué)報(bào),2015,30(02):269-273.DOI:10.13443/j.cjors.2014042402.
[62]王蕊,柴水榮,郭立新,吳振森.介質(zhì)涂覆機(jī)翼與下墊粗糙面后向復(fù)合散射研究[J].電波科學(xué)學(xué)報(bào),2014,29(06):1051-1056.DOI:10.13443/j.cjors.2013111101.
[63]徐盛,張北辰,劉瑞源,郭立新,武業(yè)文.極區(qū)電離層F_2層峰值電子濃度對太陽活動依賴性的共軛研究[J].地球物理學(xué)報(bào),2014,57(11):3502-3511.
[64]范天奇,郭立新,金健,孟肖.含泡沫面元模型的海面電磁散射研究[J].物理學(xué)報(bào),2014,63(21):110-119. (SCI檢索:ISI:000344616700014)
[65]劉偉,張昌民,郭立新,李平舟.二進(jìn)制數(shù)控電橋測室溫[J].大學(xué)物理實(shí)驗(yàn),2014,27(05):13-15+22.DOI:10.14139/j.cnki.cn22-1228.2014.05.043.
[66]李文龍,郭立新,孟肖,劉偉.含卷浪Pierson-Moscowitz譜海面電磁散射研究[J].物理學(xué)報(bào),2014,63(16):166-174.。(SCI檢索:ISI:000341427000021,EI檢索:20143907147)
[67]李廣成,郭立新,劉偉.海面正置長方體目標(biāo)復(fù)合散射極化特征[J].電波科學(xué)學(xué)報(bào),2014,29(05):853-857.DOI:10.13443/j.cjors.2013091304. ( EI檢索:20144900285953)
[68]李江漫,趙振維,郭立新,林樂科,程顯海,舒婷婷.地基微波輻射計(jì)分段正交神經(jīng)網(wǎng)絡(luò)方法遙感陰天大氣[J].電波科學(xué)學(xué)報(bào),2014,29(06):1105-1109.DOI:10.13443/j.cjors.2013101001.
[69]馬?,郭立新,常紅芳.航天器尾噴焰等離子體Al_2O_3粒子的光散射特性[J].核聚變與等離子體物理,2014,34(01):90-96.DOI:10.16568/j.0254-6086.2014.01.004.
[70]朱小敏,任新成,郭立新.指數(shù)型粗糙地面與上方矩形截面柱寬帶電磁散射的時域有限差分法研究[J].物理學(xué)報(bào),2014,63(05):143-150.
[71]茍雪銀,郭立新,張連波.支持向量機(jī)和神經(jīng)網(wǎng)絡(luò)在粗糙面參數(shù)反演中的比較[J].計(jì)算物理,2014,31(01):75-84.DOI:10.19596/j.cnki.1001-246x.2014.01.010.
[72]李江漫,郭立新,林樂科,趙振維,舒婷婷,陳后財(cái).地基微波輻射計(jì)自定標(biāo)的改進(jìn)算法[J].西安電子科技大學(xué)學(xué)報(bào),2014,41(04):77-81.
[73]彭懷云,潘威炎,郭立新.地-電離層中水平激發(fā)極低頻場的勒讓德展開算法[J].電波科學(xué)學(xué)報(bào),2013,28(05):851-856+876.DOI:10.13443/j.cjors.2013.05.006.
[74]劉忠玉,郭立新,種稚萌,陸曉峰.城市微蜂窩環(huán)境下一種改進(jìn)的射線跟蹤預(yù)測模型[J].西安電子科技大學(xué)學(xué)報(bào),2014,41(02):137-143.
[75]李江漫,郭立新,林樂科,趙振維,韓恒敏.微波輻射計(jì)與GPS聯(lián)合反演大氣折射率[J].微波學(xué)報(bào),2013,29(04):43-47.DOI:10.14183/j.cnki.1005-6122.2013.04.002.
[76]徐潤汶,郭立新,范天奇.有限元/邊界積分方法在海面及其上方彈體目標(biāo)電磁散射中的應(yīng)用[J].物理學(xué)報(bào),2013,62(17):38-44. (SCI檢索:ISI:000324875300004,EI檢索:20133916792281)
[77]鄭帆,郭立新,劉偉.風(fēng)積新月形沙丘的電磁散射特性分析[J].西安電子科技大學(xué)學(xué)報(bào),2013,40(06):132-139.
[78]張連波,郭立新,茍雪銀,王安琪.三層粗糙面電磁散射的矩量法研究[J].西安電子科技大學(xué)學(xué)報(bào),2013,40(06):147-154.
[79]徐盛,張北辰,劉瑞源,郭立新,劉俊明,武業(yè)文,胡紅橋,黃德宏.太陽活動對中山站F2層峰值電子濃度的影響[J].極地研究,2013,25(02):41-48.
[80]宋久旭,楊銀堂,王平,郭立新.含反位缺陷碳化硅納米管的電子結(jié)構(gòu)和光學(xué)性質(zhì)[J].人工晶體學(xué)報(bào),2013,42(06):1098-1103.DOI:10.16553/j.cnki.issn1000-985x.2013.06.049.
[81]劉偉,郭立新,孟肖,鄭帆.沙丘粗糙面的二次極化電磁散射[J].物理學(xué)報(bào),2013,62(14):248-255. (SCI檢索:ISI:000323623700037)
[82]李江漫,舒婷婷,林樂科,郭立新,趙振維.微波輻射計(jì)反演大氣折射率的改進(jìn)線性回歸算法[J].電波科學(xué)學(xué)報(bào),2013,28(02):316-320.DOI:10.13443/j.cjors.2013.02.015.
[83]王平,郭立新,楊銀堂,張志勇.鋁氮共摻雜氧化鋅納米管電子結(jié)構(gòu)的第一性原理研究[J].物理學(xué)報(bào),2013,62(05):316-322.
[84]田煒,任新成,郭立新.分形分層粗糙面電磁波透射特性的混合算法[J].計(jì)算物理,2013,30(01):134-139.DOI:10.19596/j.cnki.1001-246x.2013.01.018.
[85]宋久旭,楊銀堂,郭立新,王平,張志勇.反位缺陷對碳化硅納米管電子結(jié)構(gòu)和光學(xué)性質(zhì)影響研究[J].物理學(xué)報(bào),2012,61(23):446-451.
[86]李江漫,韓恒敏,林樂科,郭立新,趙振維,舒婷婷.對流層大氣折射誤差的微波輻射計(jì)修正[J].飛行器測控學(xué)報(bào),2012,31(05):32-35.
[87]張雅彬,吳健,郭立新,趙振維,林樂科,徐彬,張蕊.城市微小區(qū)準(zhǔn)三維射線追蹤模型的計(jì)算與仿真[J].電波科學(xué)學(xué)報(bào),2012,27(05):954-959+1063.DOI:10.13443/j.cjors.2012.05.003.
[88]馮永勝,郭立新,劉忠玉.基于射線跟蹤算法數(shù)字地圖自動提取與預(yù)處理[J].電子科技,2012,25(10):4-7.DOI:10.16180/j.cnki.issn1007-7820.2012.10.034.
[89]田煒,任新成,郭立新.分形海面及其上方目標(biāo)電磁散射的混合算法[J].系統(tǒng)工程與電子技術(shù),2012,34(09):1775-1780. (EI 檢索:20124415631240)
[90]李杰,郭立新,何瓊,吳振森,王曉冰.復(fù)合電磁散射分析中的精確幾何建模[J].西安電子科技大學(xué)學(xué)報(bào),2012,39(06):92-98.
[91]舒婷婷,韓恒敏,郭立新,林樂科,趙振維,李江漫.利用溫度權(quán)重函數(shù)反演大氣溫度廓線的相關(guān)理論研究[J].微波學(xué)報(bào),2012,28(S2):451-454.DOI:10.14183/j.cnki.1005-6122.2012.s2.010.
[92]任新成,郭立新,焦永昌.雪層覆蓋的粗糙地面與上方矩形截面柱復(fù)合電磁散射的時域有限差分法研究[J].物理學(xué)報(bào),2012,61(14):165-174. (SCI檢索:ISI: 000307422900024)
[93]李俊成,郭立新,劉松華.THz頻段單面左手材料的設(shè)計(jì)及仿真研究[J].物理學(xué)報(bào),2012,61(12):203-210. (SCI檢索:ISI:000306394400025)
[94]朱小敏,任新成,郭立新.一維帶限Weierstrass分形分層地面與矩形截面導(dǎo)體柱復(fù)合電磁散射FDTD研究[J].計(jì)算物理,2012,29(03):399-405.DOI:10.19596/j.cnki.1001-246x.2012.03.013.
[95]彭懷云,陶偉,潘威炎,郭立新.極低頻垂直偶極子在地-電離層中場的數(shù)值積分算法[J].電波科學(xué)學(xué)報(bào),2012,27(02):333-338.DOI:10.13443/j.cjors.2012.02.005.
[96]董康軍,郭立新,馬保科.淺議大氣湍流對無線光通信系統(tǒng)的影響[J].中小企業(yè)管理與科技(上旬刊),2012(03):288-289.
[97]毛媛,郭立新,丁慧芬,劉偉.基于高頻雷達(dá)多普勒譜預(yù)測風(fēng)向的一種新方法[J].物理學(xué)報(bào),2012,61(04):204-209.(SCI檢索:ISI:000301563800033)
[98]吳振森,郭立新,李平舟,李艷輝.依托物理學(xué)科培養(yǎng)電波傳播與天線創(chuàng)新人才[J].西安郵電學(xué)院學(xué)報(bào),2011,16(S2):82-84.DOI:10.13682/j.issn.2095-6533.2011.s2.016.
[99]劉偉,郭立新,李江挺.基于MATLAB的密立根油滴實(shí)驗(yàn)數(shù)據(jù)處理軟件[J].西安郵電學(xué)院學(xué)報(bào),2011,16(S2):85-87.DOI:10.13682/j.issn.2095-6533.2011.s2.017.
[100]徐宏兵,魏兵,郭立新.基于GUI的電波傳播動態(tài)演示課件制作[J].西安郵電學(xué)院學(xué)報(bào),2011,16(S2):88-91.DOI:10.13682/j.issn.2095-6533.2011.s2.018.
[101]弓樹宏,吳振森,周彩霞,郭立新,李平舟.對流層傳播課程的內(nèi)容優(yōu)化[J].西安郵電學(xué)院學(xué)報(bào),2011,16(S2):92-94.DOI:10.13682/j.issn.2095-6533.2011.s2.019.
[102]弓樹宏,郭宏福,吳振森,郭立新,李平舟.微波輻射計(jì)在本科教學(xué)中的應(yīng)用[J].西安郵電學(xué)院學(xué)報(bào),2011,16(S2):95-97.DOI:10.13682/j.issn.2095-6533.2011.s2.020.
[103]李江挺,郭立新,劉偉,鄧敬亞.西安電波觀測站建設(shè)與學(xué)生科學(xué)素質(zhì)的培養(yǎng)[J].西安郵電學(xué)院學(xué)報(bào),2011,16(S2):105-106+156.DOI:10.13682/j.issn.2095-6533.2011.s2.023.
[104]鄧敬亞,郭立新,李江挺.經(jīng)管類專業(yè)大學(xué)物理教學(xué)的若干思考[J].西安郵電學(xué)院學(xué)報(bào),2011,16(S2):114-116.DOI:10.13682/j.issn.2095-6533.2011.s2.025.
[105]郭宏福,郭立新,魏兵.專業(yè)實(shí)驗(yàn)教學(xué)中的數(shù)量與質(zhì)量[J].西安郵電學(xué)院學(xué)報(bào),2011,16(S2):117-119.DOI:10.13682/j.issn.2095-6533.2011.s2.051.
[106]李江挺,郭立新,周卓俊,馬靜.電離層中危險(xiǎn)碎片與不規(guī)則性的電磁散射分析[J].電波科學(xué)學(xué)報(bào),2011,26(06):1158-1164.DOI:10.13443/j.cjors.2011.06.007. (EI檢索:20120714773889)
[107]魏兵,何瓊,李杰,葛德彪,郭立新.一種計(jì)算分層半空間上方導(dǎo)線瞬態(tài)響應(yīng)的新方法[J].物理學(xué)報(bào),2011,60(10):260-266.
[108]楊能勛,郭立新,許巧平.利用力敏傳感器和安培定律測量磁感應(yīng)強(qiáng)度的一種新方法[J].大學(xué)物理,2011,30(09):41-42+65.DOI:10.16854/j.cnki.1000-0712.2011.09.004.
[109]朱小敏,任新成,郭立新.指數(shù)型分布粗糙地面電磁散射的FDTD研究[J].上海航天,2011,28(04):1-6+32.DOI:10.19328/j.cnki.1006-1630.2011.04.001.
[110]王平,楊銀堂,郭立新,尚韜,劉增基.SiC歐姆接觸特性[J].西安電子科技大學(xué)學(xué)報(bào),2011,38(04):38-41.
[111]李廣成,郭立新,吳振森,劉金海.障礙物對蒸發(fā)波導(dǎo)中電波傳播影響研究[J].電波科學(xué)學(xué)報(bào),2011,26(04):621-627+821.DOI:10.13443/j.cjors.2011.04.002. (EI檢索:20113914370750)
[112]秦三團(tuán),郭立新,代少玉,龔書喜.二維隨機(jī)粗糙面上導(dǎo)體目標(biāo)復(fù)合瞬態(tài)散射的混合算法[J].物理學(xué)報(bào),2011,60(07):377-385. (SCI檢索:ISI:000293366300053)
[113]李江挺,郭立新,金莎莎,方全杰.等離子體鞘套中的電波傳播特性研究[J].電波科學(xué)學(xué)報(bào),2011,26(03):494-500.DOI:10.13443/j.cjors.2011.03.001. (EI檢索:20113114198838)
[114]劉偉,郭立新,王安琪.具有紋理特征的二維高斯粗糙面單雙站極化散射[J].西安電子科技大學(xué)學(xué)報(bào),2011,38(06):75-81+102.
[115]李江挺,郭立新,方全杰,劉偉.高超聲速飛行器等離子鞘套中的電磁波傳播[J].系統(tǒng)工程與電子技術(shù),2011,33(05):969-973. (EI檢索:20112414064868)
[116]王平,楊銀堂,郭立新,尚韜.不同種類散射機(jī)制對寬禁帶碳化硅輸運(yùn)性質(zhì)的影響[J].西北大學(xué)學(xué)報(bào)(自然科學(xué)版),2011,41(02):201-204+217.DOI:10.16152/j.cnki.xdxbzr.2011.02.008.
[117]梁玉,郭立新,王蕊.粗糙面重構(gòu)問題的混合算法研究[J].物理學(xué)報(bào),2011,60(03):226-234. (SCI檢索:ISI:000288925700036)
[118]王運(yùn)華,張彥敏,郭立新.兩相鄰有限長圓柱的復(fù)合電磁散射研究[J].物理學(xué)報(bào),2011,60(02):190-197.
[119]劉偉,郭立新,王安琪.二維紋理特征指數(shù)譜粗糙面的極化散射[J].系統(tǒng)工程與電子技術(shù),2011,33(02):242-248. (EI檢索:20111513910503)
[120]王平,楊銀堂,劉增基,尚韜,郭立新.4H-SiC金屬-半導(dǎo)體場效應(yīng)晶體管大信號I-V特性和小信號參數(shù)的計(jì)算[J].計(jì)算物理,2011,28(01):145-151.DOI:10.19596/j.cnki.1001-246x.2011.01.021.
[121]李江挺,郭立新,胡紅橋,張北辰.空間塵埃等離子體電磁散射特性研究[J].地球物理學(xué)報(bào),2010,53(12):2829-2835. (SCI檢索:ISI:000285862200005)
[122]王蕊,郭立新,劉曉勇.分層粗糙面的電磁散射研究[J].系統(tǒng)工程與電子技術(shù),2010,32(10):2098-2102. (EI檢索:20104813430756)
[123]劉松華,郭立新,韓旭彪.并行PO分析電大尺寸復(fù)雜軍事目標(biāo)的電磁散射[J].航空兵器,2010(05):33-38.DOI:10.19297/j.cnki.41-1228/tj.2010.05.009.
[124]馬?,郭立新,崔佳慶,尹紀(jì)欣.大氣湍流中光傳播的數(shù)值模擬[J].西安工業(yè)大學(xué)學(xué)報(bào),2010,30(05):416-420.DOI:10.16185/j.jxatu.edu.cn.2010.05.015.
[125]郭立新,麻軍,王蕊,劉曉勇.MPI并行矩量法計(jì)算二維粗糙面波束電磁散射[J].系統(tǒng)工程與電子技術(shù),2010,32(09):1841-1845. (EI檢索:20104213309532 )
[126]馬保科,郭立新,吳振森.大氣信道對星地鏈路激光通信的影響[J].應(yīng)用光學(xué),2010,31(05):785-791.
[127]李江挺,郭立新,方全杰,金莎莎.等離子鞘套中的電波傳播問題研究[J].微波學(xué)報(bào),2010,26(S1):11-14.DOI:10.14183/j.cnki.1005-6122.2010.s1.060.
[128]劉松華,郭立新.電大目標(biāo)RCS的高頻計(jì)算方法[J].微波學(xué)報(bào),2010,26(S1):20-23.DOI:10.14183/j.cnki.1005-6122.2010.s1.062.
[129]楊超,郭立新,吳振森.最小二乘支持向量機(jī)在蒸發(fā)波導(dǎo)預(yù)測中的應(yīng)用[J].電波科學(xué)學(xué)報(bào),2010,25(04):632-637.DOI:10.13443/j.cjors.2010.04.005. (EI檢索:20104113292881)
[130]馬?,郭立新,胡紅橋.電離層閃爍功率譜及不均勻體漂移速度反演[J].電波科學(xué)學(xué)報(bào),2010,25(04):779-784.DOI:10.13443/j.cjors.2010.04.013. (EI檢索:20104113292906)
[131]王蕊,郭立新,王安琪,梁玉.隨機(jī)粗糙地面與下方目標(biāo)復(fù)合電磁散射研究[J].微波學(xué)報(bào),2010,26(S2):21-24.DOI:10.14183/j.cnki.1005-6122.2010.s2.031.
[132]王蕊,郭立新,王安琪.不同土壤類型的粗糙地面與其下方埋藏目標(biāo)復(fù)合電磁散射研究[J].物理學(xué)報(bào),2010,59(05):3179-3186. (SCI檢索:000277733700041)
[133]薛昆,吳健,徐彬,郭立新.高緯極區(qū)電離層中離子聲波譜線增強(qiáng)的解釋[J].空間科學(xué)學(xué)報(bào),2010,30(01):29-34.
[134]任新成,郭立新,苗紅梅.指數(shù)型分層介質(zhì)粗糙面電磁波透射系數(shù)的特征[J].強(qiáng)激光與粒子束,2010,22(01):135-139.
[135]楊超,郭立新,李宏強(qiáng),吳振森.大氣波導(dǎo)中電波傳播特性的研究[J].西安電子科技大學(xué)學(xué)報(bào),2009,36(06):1097-1102+1138.
[136]薛昆,郭立新,吳健,徐彬.高緯極區(qū)電離層離子速度分布函數(shù)的多項(xiàng)式解[J].電波科學(xué)學(xué)報(bào),2009,24(05):813-819+864.DOI:10.13443/j.cjors.2009.05.010. (EI檢索:20095112567011)
[137]郭立新,王安琪,韓旭彪.PC集群MPI并行矩量法研究復(fù)雜目標(biāo)的電磁散射[J].航空兵器,2009(05):20-25.DOI:10.19297/j.cnki.41-1228/tj.2009.05.005.
[138]魏兵,董宇航,葛德彪,郭立新.復(fù)合目標(biāo)電磁散射特性的FDTD分析[J].航空兵器,2009(05):29-32.DOI:10.19297/j.cnki.41-1228/tj.2009.05.007.
[139]梁玉,郭立新.氣泡/泡沫覆蓋粗糙海面電磁散射的修正雙尺度法研究[J].物理學(xué)報(bào),2009,58(09):6158-6166. (SCI檢索:ISI:000270156300045)
[140]任新成,郭立新.基于改進(jìn)二維分形海面模型的分層海面電磁散射分析[J].上海航天,2009,26(04):1-6.DOI:10.19328/j.cnki.1006-1630.2009.04.001.
[141]楊超,郭立新.粗糙海面電磁散射的小斜率近似方法[J].系統(tǒng)工程與電子技術(shù),2009,31(08):1814-1818. (EI檢索:20093812327105)
[142]馬保科,郭立新,楊瑞科.中國北方大氣湍流中微波傳播閃爍問題研究[J].微波學(xué)報(bào),2009,25(04):28-32.
[143]劉偉,郭立新,王蕊,麻軍.計(jì)算二維海面極化電磁散射的新方法[J].西安電子科技大學(xué)學(xué)報(bào),2009,36(03):517-523.
[144]郭立新,李宏強(qiáng),楊超,吳振森.改進(jìn)DMFT算法研究粗糙海上蒸發(fā)波導(dǎo)中的電波傳輸特性[J].電波科學(xué)學(xué)報(bào),2009,24(03):414-421.DOI:10.13443/j.cjors.2009.03.012. (EI檢索:20093612285213)
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[146]薛昆,郭立新,吳健,徐彬,房朝峰.麥克斯韋分子碰撞下的離子分布函數(shù)及其非相干散射譜的計(jì)算[J].空間科學(xué)學(xué)報(bào),2009,29(03):287-295.
[147]任新成,郭立新,楊能勛.基于微擾法指數(shù)型粗糙面電磁波透射問題研究[J].現(xiàn)代電子技術(shù),2009,32(10):110-115.DOI:10.16652/j.issn.1004-373x.2009.10.018.
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[150]薛昆,郭立新,吳健,徐彬,房朝峰.離子分布函數(shù)的20矩近似在非相干散射譜中的應(yīng)用[J].地球物理學(xué)報(bào),2009,52(04):878-886. (SCI檢索:ISI:000265665400003)
[151]任新成,郭立新.具有二維fBm特征的分層介質(zhì)粗糙面電磁散射的特性研究[J].物理學(xué)報(bào),2009,58(03):1627-1634. (SCI檢索:ISI:000264781600039)
[152]麻軍,郭立新,程相哲.Unification of the Kirchhoff approximation and the method of moment for optical wave scattering from the lossy dielectric Gaussian random rough surface[J].Chinese Optics Letters,2009,7(03):259-262.
[153]王蕊,郭立新,李娟,劉曉勇.粗糙面及其上方任意形狀截面導(dǎo)體目標(biāo)的瞬態(tài)散射[J].中國科學(xué)(G輯:物理學(xué) 力學(xué) 天文學(xué)),2009,39(02):201-212.
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[156]郭立新,王蕊,王運(yùn)華,吳振森.時變海面與其上方導(dǎo)體平板的復(fù)合電磁散射研究[J].地球物理學(xué)報(bào),2008(06):1695-1703. (SCI檢索:ISI:000261313500009)
[157]王蕊,郭立新,楊閣.等離子體涂層橢球目標(biāo)的電磁散射[J].西安電子科技大學(xué)學(xué)報(bào),2008(05):903-909.
[158]王運(yùn)華,張彥敏,郭立新.平面上方二維介質(zhì)目標(biāo)對高斯波束的電磁散射研究[J].物理學(xué)報(bào),2008(09):5529-5536. (SCI檢索: ISI:000259170800029)
[159]薛昆,郭立新,吳健,徐彬.高緯電離層離子速度的非麥克斯韋分布及其應(yīng)用[J].西安電子科技大學(xué)學(xué)報(bào),2008(04):658-663.
[160]郭立新,王蕊,王運(yùn)華,吳振森.二維粗糙海面散射回波多普勒譜頻移及展寬特征[J].物理學(xué)報(bào),2008(06):3464-3472. (SCI檢索:ISI: 000256874600028, EI檢索:20082811368768)
[161]王蕊,郭立新,秦三團(tuán),吳振森.粗糙海面及其上方導(dǎo)體目標(biāo)復(fù)合電磁散射的混合算法研究[J].物理學(xué)報(bào),2008(06):3473-3480. (SCI檢索:ISI: 000256874600029, EI檢索:20082811368769)
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[163]馬?,郭立新,張強(qiáng),常紅芳.霧對無線激光通信系統(tǒng)的影響[J].應(yīng)用光學(xué),2008(03):464-468.
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[167]郭立新,王運(yùn)華,吳振森.動態(tài)海面與運(yùn)動球形目標(biāo)后向復(fù)合電磁散射及Doppler譜研究[J].中國科學(xué)(G輯:物理學(xué) 力學(xué) 天文學(xué)),2008,38(01):34-45.
[168]馬?,郭立新.霧對無線光通信系統(tǒng)信噪比的影響[J].西安郵電學(xué)院學(xué)報(bào),2008(01):25-27.DOI:10.13682/j.issn.2095-6533.2008.01.026.
[169]王蕊,郭立新,王運(yùn)華.海面與其上方二維目標(biāo)的復(fù)合電磁散射[J].西安電子科技大學(xué)學(xué)報(bào),2007(06):958-963.
[170]馬保科,郭立新,崔佳慶,常紅芳.地面電磁(光)波散射特性研究[J].西安工業(yè)大學(xué)學(xué)報(bào),2007(06):527-530.
[171]薛昆,徐彬,吳健,郭立新.馳豫碰撞模型下非相干散射譜的計(jì)算[J].自然科學(xué)進(jìn)展,2007(11):1565-1571.
[172]任玉超,郭立新.雙頻互相干函數(shù)及在粗糙面脈沖散射中的應(yīng)用[J].中國科學(xué)(G輯:物理學(xué) 力學(xué) 天文學(xué)),2007(05):582-589.
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[174]馬?,郭立新,馬東英.一維粗糙面散射的射線追蹤法研究[J].光散射學(xué)報(bào),2007(03):268-271.DOI:10.13883/j.issn1004-5929.2007.03.008.
[175]吳振森,韋宏艷,楊瑞科,郭立新,彭輝.關(guān)于斜程湍流大氣中激光波束閃爍指數(shù)研究的綜述[J].大氣與環(huán)境光學(xué)學(xué)報(bào),2007(05):321-330.
[176]王運(yùn)華,郭立新,吳振森.兩個相鄰目標(biāo)對平面波、高斯波束的光散射[J].光學(xué)學(xué)報(bào),2007(09):1711-1718. (EI檢索:20074310888340)
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[178]馬保科,郭立新,崔佳慶.基于修正Rytov方法的光波斜程閃爍問題研究[J].紡織高校基礎(chǔ)科學(xué)學(xué)報(bào),2007(02):176-180.
[179]翟學(xué)軍,郭立新,馬?,吳盛輝.斜程傳輸中光波的閃爍問題研究[J].桂林電子科技大學(xué)學(xué)報(bào),2007(03):187-191.DOI:10.16725/j.cnki.cn45-1351/tn.2007.03.005.
[180]郭立新,王運(yùn)華,吳振森.修正雙尺度模型在非高斯海面散射中的應(yīng)用[J].電波科學(xué)學(xué)報(bào),2007(02):212-218.DOI:10.13443/j.cjors.2007.02.007. (EI檢索:20072510662964)
[181]楊俊嶺,郭立新,萬建偉.基于未充分發(fā)展海譜的分形海面模型及其電磁散射研究[J].物理學(xué)報(bào),2007(04):2106-2114. (SCI檢索:ISI:000245844300043, EI檢索:20071910595322)
[182]王運(yùn)華,郭立新,吳振森.改進(jìn)的一維分形模型在海面電磁散射中的應(yīng)用[J].電子學(xué)報(bào),2007(03):478-483. (EI檢索:20072010603098)
[183]王運(yùn)華,郭立新,吳振森.平行柱體對平面波/高斯波束電磁散射[J].物理學(xué)報(bào),2007(01):186-194. (SCI檢索:ISI:000243511600030, EI檢索:20071110487945)
[184]楊瑞科,劉科祥,吳振森,郭立新.湍流大氣外尺度對波束地-空傳播閃爍影響研究[J].電波科學(xué)學(xué)報(bào),2006(06):899-903.DOI:10.13443/j.cjors.2006.06.019.
[185]郭立新,王運(yùn)華,吳振森.等效原理和互易性定理在兩個相鄰球形目標(biāo)電磁散射中的應(yīng)用[J].物理學(xué)報(bào),2006(11):5815-5823.
[186]趙振維,吳春雨,林樂科,郭立新.視距鏈路的雨衰減預(yù)報(bào)模式研究[J].電波科學(xué)學(xué)報(bào),2006(05):656-658+676.DOI:10.13443/j.cjors.2006.05.004.
[187]王運(yùn)華,郭立新,吳振森.改進(jìn)的二維分形模型在海面電磁散射中的應(yīng)用[J].物理學(xué)報(bào),2006(10):5191-5199.
[188]任新成,郭立新,張玉強(qiáng).基于微擾法的高斯粗糙面透射波散射截面研究[J].延安大學(xué)學(xué)報(bào)(自然科學(xué)版),2006(03):29-33.
[189]任玉超,郭立新.二維粗糙面的多次散射和遮蔽效應(yīng)研究[J].系統(tǒng)工程與電子技術(shù),2006(04):495-497+504.
[190]李良超,吳振森,郭立新.覆蓋多種材料的復(fù)雜目標(biāo)LRCS計(jì)算[J].西安電子科技大學(xué)學(xué)報(bào),2006(02):211-214.
[191]任新成,郭立新,劉生春.基于微擾法的高斯粗糙面電磁散射研究[J].延安大學(xué)學(xué)報(bào)(自然科學(xué)版),2006(01):26-30.
[192]任新成,郭立新.基爾霍夫近似下高斯粗糙面的電磁散射研究[J].延安大學(xué)學(xué)報(bào)(自然科學(xué)版),2005(04):50-53.
[193]郭立新,王運(yùn)華,吳振森.二維導(dǎo)體微粗糙面與其上方金屬平板的復(fù)合電磁散射研究[J].物理學(xué)報(bào),2005(11):5130-5138.
[194]王運(yùn)華,郭立新.一維微粗糙面與其上方金屬平板的復(fù)合電磁散射研究[J].電波科學(xué)學(xué)報(bào),2005(05):580-585.DOI:10.13443/j.cjors.2005.05.007.
[195]郭立新,任玉超,吳振森.動態(tài)分形粗糙海面散射的遮蔽效應(yīng)和多普勒譜研究[J].電子與信息學(xué)報(bào),2005(10):1666-1670.
[196]郭立新,陳建軍,韋國暉,吳春雨.粗糙面電磁散射的小斜率近似方法研究[J].西安電子科技大學(xué)學(xué)報(bào),2005(03):408-413.
[197]白璐,吳振森,陳輝,郭立新.高斯波束入射下串粒子的散射問題[J].物理學(xué)報(bào),2005(05):2025-2029.
[198]易修雄,郭立新,吳振森.高斯波束在湍流大氣斜程傳輸中的閃爍問題研究[J].光學(xué)學(xué)報(bào),2005(04):433-438.
[199]郭立新,徐燕,吳振森.分形粗糙海面高斯波束散射特性模擬[J].電子學(xué)報(bào),2005(03):534-537.
[200]郭立新,王運(yùn)華,吳振森.雙尺度動態(tài)分形粗糙海面的電磁散射及多普勒譜研究[J].物理學(xué)報(bào),2005(01):96-101.
[201]郭立新,金彩英,吳振森.一維粗糙介質(zhì)分形海面電磁散射的擴(kuò)展邊界條件法[J].電子學(xué)報(bào),2004(01):139-142.
[202]郭立新,官秀國,徐英霞.分形粗糙面單站散射的遮蔽效應(yīng)研究[J].西安電子科技大學(xué)學(xué)報(bào),2003(05):617-622.
[203]郭立新,金彩英,吳振森.微粗糙面上方球形粒子的光散射及其散射截面的計(jì)算[J].光學(xué)學(xué)報(bào),2003(06):717-723.
[204]郭立新,金彩英.脈沖波入射時分形粗糙海面的雙頻散射截面和脈沖展寬[J].紅外與毫米波學(xué)報(bào),2003(02):132-136.
[205]郭立新,官秀國.波束入射時一維動態(tài)粗糙海面的電磁散射[J].科學(xué)技術(shù)與工程,2003(01):15-19.
[206]郭立新,吳振森.二維分形粗糙面電磁散射的分形規(guī)律研究[J].電子與信息學(xué)報(bào),2002(10):1405-1411.
[207]駱志敏,吳振森,郭立新,趙振維.考慮內(nèi)尺度效應(yīng)時光波閃爍的斜程傳輸研究[J].西安電子科技大學(xué)學(xué)報(bào),2002(04):455-460.
[208]吳振森,駱志敏,郭立新,趙振維.湍流大氣中光波閃爍的斜程問題研究[J].電波科學(xué)學(xué)報(bào),2002(03):254-257+268.DOI:10.13443/j.cjors.2002.03.010.
[209]郭立新,駱志敏,吳振森.湍流大氣中光波閃爍的計(jì)算及實(shí)驗(yàn)測量比較[J].電波科學(xué)學(xué)報(bào),2002(03):273-276+285.DOI:10.13443/j.cjors.2002.03.014.
[210]郭立新,吳振森.粗糙面散射物理光學(xué)近似條件中的曲率修正[J].西安電子科技大學(xué)學(xué)報(bào),2002(02):245-248.
[211]郭立新,吳振森,姚紀(jì)歡,張延冬.考慮曲率修正效應(yīng)時粗糙面電磁散射的微擾法[J].電子學(xué)報(bào),2002(03):328-331.
[212]張民,吳振森,郭立新,印國泰.波導(dǎo)縫隙陣天線的電磁散射特性分析與校驗(yàn)[J].電子學(xué)報(bào),2002(03):413-415.
[213]郭立新,吳振森.考慮海譜分布的動態(tài)分形海面的電磁散射[J].電子學(xué)報(bào),2001(09):1287-1289.
[214]郭立新,駱志敏,吳振森,張民.湍流大氣中的光波閃爍研究[J].西安電子科技大學(xué)學(xué)報(bào),2001(03):273-277.
[215]郭立新,吳振森.fBm隨機(jī)粗糙面電磁散射的微擾法近似[J].微波學(xué)報(bào),2001(02):60-66.
[216]郭立新,吳振森,張民.湍流大氣中漫射目標(biāo)光散射特性研究[J].電子與信息學(xué)報(bào),2001(04):388-395.
[217]郭立新,吳振森.二維分?jǐn)?shù)布朗運(yùn)動(FBM)隨機(jī)粗糙面電磁散射的基爾霍夫近似[J].物理學(xué)報(bào),2001(01):42-47.
[218]郭立新,駱志敏,吳振森.分形大氣湍流中導(dǎo)體目標(biāo)的電磁散射[J].電波科學(xué)學(xué)報(bào),2000(04):423-428.DOI:10.13443/j.cjors.2000.04.008.
[219]郭立新,駱志敏.隱函數(shù)等值線的計(jì)算機(jī)繪制及其在大學(xué)物理課程內(nèi)容模擬上的應(yīng)用[J].大學(xué)物理,2000(12):34-36.DOI:10.16854/j.cnki.1000-0712.2000.12.010.
[220]吳振森,郭立新,韓香娥,侯尚慧.利用彩虹強(qiáng)度角譜分布對圓柱直徑的測量[J].光學(xué)學(xué)報(bào),2000(11):1538-1543.
[221]郭立新,柯熙政,吳振森.一維隨機(jī)粗糙面電磁散射的小波矩量解[J].西安電子科技大學(xué)學(xué)報(bào),2000(05):585-589.
[222]張民,吳振森,郭立新.新型箔片云團(tuán)雙站電磁散射計(jì)算方法研究[J].電波科學(xué)學(xué)報(bào),2000(03):304-307.DOI:10.13443/j.cjors.2000.03.011.
[223]郭立新,吳振森,柯熙政.二維帶限分形粗糙面電磁散射的基爾霍夫近似[J].電子學(xué)報(bào),2000(09):128-130.
[224]郭立新,吳振森.二維導(dǎo)體粗糙面電磁散射的分形特征研究[J].物理學(xué)報(bào),2000(06):1064-1069.
[225]郭立新,吳振森.湍流大氣中含鏡反射點(diǎn)漫射目標(biāo)的電磁散射[J].電波科學(xué)學(xué)報(bào),2000(01):7-12.DOI:10.13443/j.cjors.2000.01.002.
[226]柯熙政,郭立新,吳振森.一維隨機(jī)粗糙面后向增強(qiáng)效應(yīng)的蒙特-卡羅方法研究[J].光學(xué)學(xué)報(bào),1999(04):60-65.
[227]柯熙政,吳振森,郭立新.二維隨機(jī)粗糙面的fBm模擬及其統(tǒng)計(jì)特性[J].電波科學(xué)學(xué)報(bào),1998(02):167-172.DOI:10.13443/j.cjors.1998.02.012.
[228]吳振森,郭立新,吳成明.離軸多層球?qū)Ω咚共ㄊ墓馍⑸鋄J].光學(xué)學(xué)報(bào),1998(06):26-31.
[229]柯熙政,郭立新.原子鐘噪聲的多尺度分形特征[J].電波科學(xué)學(xué)報(bào),1997(04):396-400+406.DOI:10.13443/j.cjors.1997.04.009.
[230]郭立新,吳振森.二維高斯波束入射時無限長多層園柱的彩虹現(xiàn)象研究[J].光散射學(xué)報(bào),1997(Z1):325-327.
[231]吳振森,郭立新.分形相位屏的衍射(Ⅰ):平均衍射強(qiáng)度[J].電波科學(xué)學(xué)報(bào),1996(01):14-20.
[232]吳振森,郭立新,崔索民.垂直入射時無限長多層介質(zhì)圓柱的內(nèi)、外場計(jì)算[J].電子學(xué)報(bào),1995(06):114-116.
[233]郭立新,吳振森.表面分形球、柱的光散射[J].光散射學(xué)報(bào),1994(01):25-29.
[234]吳振森,郭立新.一維隨機(jī)分形曲線的分維估計(jì)[J].計(jì)算物理,1992(S2):687-692.DOI:10.19596/j.cnki.1001-246x.1992.s2.013.
發(fā)表會議論文:
[1]葉大林; 郭立新; 李慧敏; 李珂. 日冕物質(zhì)拋射的自動識別與特征提取[C] .2021年中國地球科學(xué)聯(lián)合學(xué)術(shù)年會論文集(一)—專題一 太陽活動及其空間天氣效應(yīng)、專題二 磁層中的等離子體物理過程、專題三 行星物理學(xué).,2021:36.DOI:10.26914/c.cnkihy.2021.071628.
[2]李珂; 李慧敏; 葉大林; 郭立新; 劉偉. 基于太陽活動區(qū)參量的太陽耀斑預(yù)報(bào)模型[C] .2021年中國地球科學(xué)聯(lián)合學(xué)術(shù)年會論文集(一)—專題一 太陽活動及其空間天氣效應(yīng)、專題二 磁層中的等離子體物理過程、專題三 行星物理學(xué).,2021:37.DOI:10.26914/c.cnkihy.2021.071629.
[3]馮恬恬; 郭立新. 基于彈跳射線法的電大尺寸部分涂覆目標(biāo)的RCS計(jì)算[C] .2020年全國微波毫米波會議論文集(上冊). 2020:191.DOI:10.26914/c.cnkihy.2020.051876.
[4]郭立新; 左炎春; 劉偉; 劉松華. 基于VRT的飛機(jī)尾流中箔條云團(tuán)電磁散射計(jì)算研究[C] .2020年全國微波毫米波會議論文集(上冊). 2020:199-202.DOI:10.26914/c.cnkihy.2020.051879.
[5]郭立新. 海面艦船目標(biāo)復(fù)合電磁散射建模及雷達(dá)成像研究[C] .2019年全國微波毫米波會議論文集(上冊). 2019:155.
[6]王亞姣;郭立新;關(guān)曉偉;李清亮. 基于數(shù)字高程地圖的寬角拋物方程模型[C] .2017年全國天線年會論文集(下冊).,2017:572-575.
[7]劉祥; 郭立新; 劉偉. 基于能量比值法的局部照射下簡單目標(biāo)近場散射特性[C] .2017年全國天線年會論文集(下冊).,2017:412-414.
[8]鄧敬亞; 郭立新; 陳斌. 具有二階帶通濾波器響應(yīng)的濾波天線設(shè)計(jì)[C] .2015年全國天線年會論文集(上冊). 2015:97-99.DOI:10.26914/c.cnkihy.2015.004301.
[9]徐超奇; 郭立新; 李江挺. 電磁波在等離子體鞘套中傳播的加熱非線性效應(yīng)研究[C] .2015年全國天線年會論文集(下冊). 2015:528-530.DOI:10.26914/c.cnkihy.2015.004171.
[10]劉德; 郭立新; 李江挺. 再入等離子鞘套中燒蝕顆粒電磁散射特性研究[C] .2015年全國天線年會論文集(上冊). 2015:742-745.DOI:10.26914/c.cnkihy.2015.004490.
[11]郭立新. 目標(biāo)與粗糙地海面復(fù)合電磁散射建模及應(yīng)用研究[C] .2015年全國天線年會論文集(上冊). 2015:737.DOI:10.26914/c.cnkihy.2015.004488.
[12]劉蛟; 郭立新. 基于NURBS曲面建模的電大粗糙面電磁散射分析[C] .2015年全國天線年會論文集(上冊). 2015:750-753.DOI:10.26914/c.cnkihy.2015.004492.
[13]劉偉; 范天奇; 郭立新. 基于SBR-MECA/PTD的低掠射角下卷浪的電磁散射[C] .2015年全國微波毫米波會議論文集.,2015:102-106.
[14]張濤; 郭立新; 劉偉. 基于OpenGL消隱的并行IPO在粗糙面與目標(biāo)的電磁散射中的應(yīng)用[C] .2015年全國微波毫米波會議論文集.,2015:107-111.
[15]范天奇; 郭立新; 金健. 一種物理光學(xué)遮擋消影的OpenGL加速方法[C] .2013年全國天線年會論文集(上冊).,2013:588-590.DOI:10.26914/c.cnkihy.2013.001471.
[16]金健; 郭立新; 李文龍. 基于三角面元模型的海面電磁散射高頻方法研究[C] .2013年全國天線年會論文集(上冊).,2013:617-619.DOI:10.26914/c.cnkihy.2013.001480.
[17]常偉; 郭立新; 魏儀文. 基于MPI平臺MoM-PO算法的粗糙面與目標(biāo)復(fù)合電磁散射研究[C] .2013年全國天線年會論文集(下冊).,2013:207-209.DOI:10.26914/c.cnkihy.2013.001585.
[18]徐盛;張北辰;劉瑞源;郭立新;劉俊明;武業(yè)文;胡紅橋;黃德宏. 太陽活動對中山站F2層峰值電子濃度的影響[C] .中國空間科學(xué)學(xué)會空間物理學(xué)專業(yè)委員會第十五屆全國日地空間物理學(xué)研討會摘要集. 2013:174.
[19]郭立新; 徐潤汶. 粗糙面電磁散射的有限元方法研究[C] .2013年全國微波毫米波會議論文集.,2013:114-117.
[20]李仁先; 丁春穎; 郭立新; 吳振森等. 貝塞爾波束波束因子計(jì)算的積分區(qū)域近似[C] .2013年全國微波毫米波會議論文集.,2013:152-155.
[21]常偉; 郭立新; 金健; 王蕊. 基于基爾霍夫近似的色散粗糙面電磁散射特性研究[C] .2013年全國微波毫米波會議論文集.,2013:172-175.
[22]張連波; 郭立新; 茍雪銀. 基于矩量法的介質(zhì)粗糙面散射GPU加速方法[C] .2013年全國微波毫米波會議論文集.,2013:176-179.
[23]馬?; 郭立新; 吳蓉蓉. 極區(qū)電離層電導(dǎo)率的冬季異常行為研究[C] .2011年全國天線年會論文集(下冊).,2011:776-779.DOI:10.26914/c.cnkihy.2011.002540.
[24]王安琪; 郭立新; 柴水榮. 二維粗糙面電磁散射的快速求解[C] .2011年全國天線年會論文集(下冊).,2011:604-607.DOI:10.26914/c.cnkihy.2011.002496.
[25]吳蓉蓉; 郭立新; 馬?. 高緯電離層電導(dǎo)率的變化特性研究[C] .2011年全國天線年會論文集(下冊).,2011:780-783.DOI:10.26914/c.cnkihy.2011.002541.
[26]王蕊; 郭立新; 王安琪; 梁玉. 隨機(jī)粗糙地面與下方目標(biāo)復(fù)合電磁散射研究[C] .2010年全國電磁兼容會議論文集.,2010:31-34.
[27]曾浩; 郭立新; 李娟. 用MPI實(shí)現(xiàn)粗糙表面散射的FDTD網(wǎng)絡(luò)并行計(jì)算[C] .2009年西部光子學(xué)學(xué)術(shù)會議論文摘要集. 2009:38.
[28]李娟; 郭立新. 二維粗糙面光散射的FDTD研究[C] .2009年西部光子學(xué)學(xué)術(shù)會議論文摘要集. 2009:48.
[29]王蕊; 郭立新; 王安琪. 矩量法在粗糙海面與上方低飛目標(biāo)復(fù)合散射中的應(yīng)用[C] .2009年西部光子學(xué)學(xué)術(shù)會議論文摘要集. 2009:49.
[30]郭立新; 麻軍; 王安琪. PC集群MPI并行矩量法研究一維大尺度粗糙面掠入射電磁散射特性[C] .2009年全國微波毫米波會議論文集(下冊).,2009:66-69.
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