發(fā)明專利:
發(fā)明公開:
[1]歐陽征標, 德·泰雅吉. 基于紅外光與光子晶體共振腔的太赫茲波產(chǎn)生裝置及方法[P]. 廣東省: CN117498122A, 2024-02-02.
[2]王瓊, 鄭耀賢, 歐陽征標, 林密. 一種基于漸變齒輪柱陣列的超帶寬太赫茲石墨烯吸收器[P]. 廣東省: CN116345184A, 2023-06-27.
[3]王瓊, 鄭耀賢, 歐陽征標, 林密. 一種具有異質(zhì)結(jié)構(gòu)耦合腔的多層石墨烯寬帶吸收器[P]. 廣東省: CN116315728A, 2023-06-23.
[4]申素玲, 歐陽征標, 劉強, 張馳. 基于太赫茲時域光譜技術(shù)測量鈣鈦礦金屬氧化物粉末的氧離子電導(dǎo)率和活化能的方法及應(yīng)用[P]. 廣東省: CN115993341A, 2023-04-21.
[5]王瓊, 歐陽征標, 林密. 一種帶雙層耦合介質(zhì)環(huán)周期陣列的太赫茲石墨烯吸收器[P]. 廣東省: CN113422211A, 2021-09-21.
[6]林密, 歐陽征標, 傅立新, 王瓊. 基于磁光材料的與偏振無關(guān)的光子晶體環(huán)行器[P]. 廣東省: CN112526775A, 2021-03-19.
[7]黃海濤, 歐陽征標, 黃粵龍, 林密. 一種基于高壓氣體膨脹降溫激發(fā)的太赫茲激光器[P]. 廣東省: CN111431016A, 2020-07-17.
[8]黃粵龍, 歐陽征標, 黃海濤, 陶科玉. 基于單個自動調(diào)溫低溫熱源的太赫茲激光器[P]. 廣東省: CN111431017A, 2020-07-17.
[9]歐陽征標, 王瓊, 黃海濤, 肖漢文. 一種基于雙恒溫熱源設(shè)備的太赫茲激光器[P]. 廣東省: CN111431018A, 2020-07-17.
[10]歐陽征標, 黃粵龍, 黃海濤. 基于光激發(fā)的太赫茲激光器[P]. 廣東省: CN111431028A, 2020-07-17.
[11]歐陽征標, 許桂雯, 黃海濤, 查海平, 黃粵龍. 基于微波激發(fā)的太赫茲激光器[P]. 廣東省: CN111403994A, 2020-07-10.
[12]歐陽征標, 鄭耀賢, 黃粵龍, 黃海濤. 一種微生物和生物機體內(nèi)含物的太赫茲檢測方法及系統(tǒng)[P]. 廣東省: CN111366556A, 2020-07-03.
[13]歐陽征標, 黃海濤, 鄭耀賢, 肖漢文. 基于單個高溫熱源的太赫茲激光器[P]. 廣東省: CN111029889A, 2020-04-17.
[14]歐陽征標, 黃粵龍, 肖漢文, 黃海濤. 基于互補矩形脈沖雙頻光激發(fā)的太赫茲激光器[P]. 廣東省: CN111009816A, 2020-04-14.
[15]歐陽征標, 黃海濤, 黃粵龍. 基于電磁感應(yīng)熱激發(fā)的太赫茲激光器[P]. 廣東省: CN111009817A, 2020-04-14.
[16]劉強, 張馳, 歐陽征標. 基于聚合物布洛赫表面波的太赫茲氣體傳感器[P]. 廣東省: CN110763653A, 2020-02-07.
[17]歐陽征標, 安銀冰. 一種光子晶體波導(dǎo)正交分裂模干涉FANO共振結(jié)構(gòu)[P]. 廣東省: CN109669239A, 2019-04-23.
[18]歐陽征標, 安銀冰, 吳國城. 一種光子晶體波導(dǎo)六極分裂模干涉FANO共振結(jié)構(gòu)[P]. 廣東省: CN109669240A, 2019-04-23.
[19]歐陽征標, 安銀冰. 一種光子晶體波導(dǎo)四極分裂模干涉FANO共振結(jié)構(gòu)[P]. 廣東省: CN109669241A, 2019-04-23.
[20]歐陽征標, 安銀冰, 孫一翎. 一種光子晶體波導(dǎo)對角模干涉FANO共振結(jié)構(gòu)[P]. 廣東省: CN109669242A, 2019-04-23.
[21]歐陽征標, 梁麗容, 尹嘉峻, 凡俊興. 一種法諾共振MDM超表面高靈敏度背景折射率傳感器[P]. 廣東省: CN109307659A, 2019-02-05.
[22]歐陽征標, 梁麗容, 尹嘉峻, 凡俊興. 一種法諾共振MHM超表面高靈敏度背景折射率傳感器[P]. 廣東省: CN109239013A, 2019-01-18.
[23]歐陽征標, 肖棟. 一種用于紅外多波段相干光吸收的超表面[P]. 廣東: CN107797163A, 2018-03-13.
[24]王瓊, 歐陽征標. 可實現(xiàn)Fano共振的多波長可調(diào)型納米傳感器[P]. 廣東: CN107478606A, 2017-12-15.
[25]王瓊, 歐陽征標. 可實現(xiàn)Fano共振的扇形納米傳感器[P]. 廣東: CN107478249A, 2017-12-15.
[26]歐陽征標, 鄭耀賢. 無泄漏低損型磁光薄膜磁表面快模任意角單向拐彎波導(dǎo)[P]. 廣東: CN106405729A, 2017-02-15.
[27]歐陽征標, 鄭耀賢. 無泄漏磁光薄膜磁表面快波方向可控光二極管[P]. 廣東: CN106405885A, 2017-02-15.
[28]歐陽征標, 鄭耀賢. 無泄漏低損型磁光空隙磁表面快模任意角單向拐彎波導(dǎo)[P]. 廣東: CN106291811A, 2017-01-04.
[29]歐陽征標, 鄭耀賢, 艾月霞. 低損磁光薄膜磁表面快模任意方向可控單向拐彎波導(dǎo)[P]. 廣東: CN106291812A, 2017-01-04.
[30]歐陽征標, 鄭耀賢, 艾月霞. 低損型磁光空隙磁表面快模任意角單向拐彎波導(dǎo)[P]. 廣東: CN106249352A, 2016-12-21.
[31]歐陽征標, 鄭耀賢, 王瓊. 磁光薄膜磁表面快波方向可控光二極管[P]. 廣東: CN106249443A, 2016-12-21.
[32]歐陽征標, 鄭耀賢. 無泄漏磁光材料空隙波導(dǎo)磁表面快波方向可控光二極管[P]. 廣東: CN106249444A, 2016-12-21.
[33]歐陽征標, 鄭耀賢, 艾月霞. 低損型磁光薄膜磁表面快模任意角單向拐彎波導(dǎo)[P]. 廣東: CN106249445A, 2016-12-21.
[34]歐陽征標, 鄭耀賢, 王瓊. 磁光材料空隙波導(dǎo)磁表面快波光二極管[P]. 廣東: CN106226924A, 2016-12-14.
[35]歐陽征標, 鄭耀賢. 無泄漏磁光薄膜磁表面快波光二極管[P]. 廣東: CN106226925A, 2016-12-14.
[36]歐陽征標, 鄭耀賢, 王瓊. 磁光材料空隙波導(dǎo)磁表面快波方向可控光二極管[P]. 廣東: CN106200023A, 2016-12-07.
[37]歐陽征標, 鄭耀賢, 王瓊. 磁光薄膜磁表面快波光二極管[P]. 廣東: CN106200024A, 2016-12-07.
[38]歐陽征標, 鄭耀賢. 無泄漏磁光材料空隙波導(dǎo)磁表面快波光二極管[P]. 廣東: CN106200025A, 2016-12-07.
[39]歐陽征標, 鄭耀賢. 無泄漏低損磁光空隙磁表面快模可控單向任意拐彎波導(dǎo)[P]. 廣東: CN106200026A, 2016-12-07.
[40]歐陽征標, 鄭耀賢, 艾月霞. 低損磁光空隙磁表面快模任意方向可控單向拐彎波導(dǎo)[P]. 廣東: CN106154415A, 2016-11-23.
[41]歐陽征標, 鄭耀賢. 無泄漏低損磁光薄膜磁表面快?煽貑蜗蛉我夤諒澆▽(dǎo)[P]. 廣東: CN106154416A, 2016-11-23.
[42]歐陽征標, 陳治良. 基于MIM高靈敏度SPP太赫茲探測器[P]. 廣東: CN105737975A, 2016-07-06.
[43]歐陽征標, 陳治良. 基于內(nèi)置液囊和光譜谷點的高分辨率溫度傳感器[P]. 廣東: CN105716729A, 2016-06-29.
[44]歐陽征標, 陳治良. 基于外置液囊和光譜谷點的超高分辨率溫度傳感器[P]. 廣東: CN105628247A, 2016-06-01.
[45]歐陽征標, 吳昌義, 金鑫. 基于光子晶體T型波導(dǎo)的直角輸出磁光調(diào)制器[P]. 廣東: CN105607303A, 2016-05-25.
[46]歐陽征標, 吳昌義, 金鑫. 基于光子晶體T型波導(dǎo)的橫向輸出磁控二選一光路開關(guān)[P]. 廣東: CN105607304A, 2016-05-25.
[47]歐陽征標, 吳昌義, 金鑫. 基于光子晶體T型波導(dǎo)的橫向輸出磁光調(diào)制器[P]. 廣東: CN105607305A, 2016-05-25.
[48]歐陽征標, 陳治良. 基于內(nèi)置液囊和固定波長的高分辨溫度傳感器[P]. 廣東: CN105606250A, 2016-05-25.
[49]歐陽征標, 陳治良. 基于外置液囊和固定波長的超高分辨溫度傳感器[P]. 廣東: CN105571742A, 2016-05-11.
[50]歐陽征標, 陳治良. 一種太赫茲波脈沖調(diào)幅信號與光脈沖調(diào)幅信號變換放大器[P]. 廣東: CN105572797A, 2016-05-11.
[51]歐陽征標, 陳治良. 基于MIM高靈敏度SPP溫度光開關(guān)[P]. 廣東: CN105572798A, 2016-05-11.
[52]歐陽征標, 吳昌義, 金鑫. 光子晶體波導(dǎo)雙路反相光學時鐘信號發(fā)生器[P]. 廣東: CN105572917A, 2016-05-11.
[53]歐陽征標, 吳昌義, 金鑫. 基于光子晶體十字波導(dǎo)的磁控二選一光路開關(guān)[P]. 廣東: CN105572918A, 2016-05-11.
[54]歐陽征標, 吳昌義, 金鑫. 基于光子晶體十字波導(dǎo)的磁光調(diào)制器[P]. 廣東: CN105572919A, 2016-05-11.
[55]歐陽征標, 吳昌義, 金鑫. 基于光子晶體十字波導(dǎo)的雙路反相光學時鐘信號發(fā)生器[P]. 廣東: CN105572920A, 2016-05-11.
[56]歐陽征標, 吳昌義, 金鑫. 基于光子晶體T型波導(dǎo)的磁控二選一直角輸出光路開關(guān)[P]. 廣東: CN105572921A, 2016-05-11.
[57]歐陽征標, 吳昌義, 金鑫. 光子晶體T型波導(dǎo)直角輸出雙路反相光學時鐘信號發(fā)生器[P]. 廣東: CN105572922A, 2016-05-11.
[58]歐陽征標, 余銓強, 南.尤格希. 一種左旋圓偏振轉(zhuǎn)換的超材料薄膜[P]. 廣東: CN105161857A, 2015-12-16.
[59]歐陽征標, 余銓強, 南.尤格希. 一種右旋圓偏振轉(zhuǎn)換的超材料薄膜[P]. 廣東: CN105044814A, 2015-11-11.
[60]歐陽征標, 黃浩. 方孔式正方晶格光子晶體低折射率雙補償散射柱直角波導(dǎo)[P]. 廣東: CN104950383A, 2015-09-30.
[61]歐陽征標, 黃浩. 圓孔式正方晶格光子晶體低折射率雙補償散射柱直角波導(dǎo)[P]. 廣東: CN104950384A, 2015-09-30.
[62]歐陽征標, 黃浩. 方柱式正方晶格光子晶體高折射率雙補償散射柱直角波導(dǎo)[P]. 廣東: CN104950385A, 2015-09-30.
[63]歐陽征標, 黃浩. 方柱式正方晶格光子晶體高折射率單補償散射柱直角波導(dǎo)[P]. 廣東: CN104950386A, 2015-09-30.
[64]歐陽征標, 黃浩. 圓柱式正方晶格光子晶體高折射率單補償散射柱直角波導(dǎo)[P]. 廣東: CN104950387A, 2015-09-30.
[65]歐陽征標, 黃浩. 圓孔式正方晶格光子晶體低折射率單補償散射柱直角波導(dǎo)[P]. 廣東: CN104950388A, 2015-09-30.
[66]歐陽征標, 黃浩. 圓柱式正方晶格光子晶體高折射率雙補償散射柱直角波導(dǎo)[P]. 廣東: CN104950389A, 2015-09-30.
[67]歐陽征標, 黃浩. 一種高傳輸率高回波損耗高隔離度光子晶體光橋[P]. 廣東: CN104932055A, 2015-09-23.
[68]歐陽征標, 陳治良. 基于旋轉(zhuǎn)空心正方柱的二維正方晶格光子晶體[P]. 廣東: CN104849805A, 2015-08-19.
[69]歐陽征標, 陳治良. 基于十字連桿與旋轉(zhuǎn)空心正方柱的二維正方晶格光子晶體[P]. 廣東: CN104849806A, 2015-08-19.
[70]歐陽征標, 陳治良. 旋轉(zhuǎn)空心正方柱與旋轉(zhuǎn)三角柱二維正方晶格光子晶體[P]. 廣東: CN104820264A, 2015-08-05.
[71]鄭國梁, 鄧想全, 徐世祥, 吳慶陽, 歐陽征標. 一種基于電光衍射的定向分波器及波分復(fù)用系統(tǒng)[P]. 廣東: CN104730798A, 2015-06-24.
[72]歐陽征標, 王瓊. 一種引入補償柱的高傳輸率和高隔離度的三端口光環(huán)行器[P]. 廣東: CN104597630A, 2015-05-06.
[73]王瓊, 歐陽征標. 一種引入三角引導(dǎo)柱的寬頻帶三端口光環(huán)行器[P]. 廣東: CN104597631A, 2015-05-06.
[74]王瓊, 歐陽征標. 一種緊湊型六端口光子晶體環(huán)行器[P]. 廣東: CN104570409A, 2015-04-29.
[75]歐陽征標, 余銓強. 高對比度光子晶體“或”、“非”、“異或”邏輯門[P]. 廣東: CN104536234A, 2015-04-22.
[76]歐陽征標, 余銓強. 光子晶體全光多步延遲自或變換邏輯門[P]. 廣東: CN104536235A, 2015-04-22.
[77]歐陽征標, 余銓強. 光子晶體全光多步延遲與變換邏輯門[P]. 廣東: CN104536236A, 2015-04-22.
[78]歐陽征標, 余銓強. 光子晶體全光學抗干擾自鎖觸發(fā)開關(guān)[P]. 廣東: CN104536237A, 2015-04-22.
[79]歐陽征標, 余銓強. 光子晶體全光多步延遲或變換邏輯門[P]. 廣東: CN104536238A, 2015-04-22.
[80]歐陽征標, 余銓強. 光學時鐘發(fā)生器[P]. 廣東: CN104536239A, 2015-04-22.
[81]歐陽征標, 余銓強. 高對比度光子晶體與邏輯門[P]. 廣東: CN104503186A, 2015-04-08.
[82]歐陽征標, 余銓強. 光子晶體全光自與變換邏輯門[P]. 廣東: CN104483800A, 2015-04-01.
[83]歐陽征標, 余銓強. 光子晶體全光多步延遲自與變換邏輯門[P]. 廣東: CN104483801A, 2015-04-01.
[84]歐陽征標, 余銓強. 光子晶體全光或變換邏輯門[P]. 廣東: CN104483802A, 2015-04-01.
[85]歐陽征標, 余銓強. 光子晶體全光自或變換邏輯門[P]. 廣東: CN104483803A, 2015-04-01.
[86]歐陽征標, 余銓強. 光子晶體全光與變換邏輯門[P]. 廣東: CN104483804A, 2015-04-01.
[87]歐陽征標, 余銓強. 光子晶體記憶式全光或與邏輯門[P]. 廣東: CN104483805A, 2015-04-01.
[88]歐陽征標, 余銓強. 光子晶體全光學D觸發(fā)器[P]. 廣東: CN104485928A, 2015-04-01.
[89]歐陽征標, 文國華. 基于平板光子晶體的高偏振度及高消光比TM光開關(guān)[P]. 廣東: CN104459988A, 2015-03-25.
[90]歐陽征標, 文國華. 基于平板光子晶體的高消光比TE光開關(guān)[P]. 廣東: CN104459989A, 2015-03-25.
[91]歐陽征標, 文國華. 基于平板光子晶體的高消光比偏振無關(guān)光開關(guān)[P]. 廣東: CN104459990A, 2015-03-25.
[92]歐陽征標, 文國華. 基于平板光子晶體的高偏振度及高消光比TE光開關(guān)[P]. 廣東: CN104459991A, 2015-03-25.
[93]歐陽征標, 文國華. 基于平板光子晶體高消光比TM光開關(guān)[P]. 廣東: CN104375267A, 2015-02-25.
[94]林密, 歐陽征標, 金鑫, 文國華, 王晶晶. 一種基于完全禁帶型光子晶體波導(dǎo)的X形交叉偏振光橋[P]. 廣東: CN104360440A, 2015-02-18.
[95]歐陽征標, 文國華. 一種十字連桿與旋轉(zhuǎn)正方桿的二維正方晶格光子晶體[P]. 廣東: CN104297842A, 2015-01-21.
[96]歐陽征標, 黃浩. 基于高折射率內(nèi)圓外方空心柱的正方晶格光子晶體[P]. 廣東: CN104155718A, 2014-11-19.
[97]歐陽征標, 王晶晶. 基于三連桿柱和圓環(huán)柱的大絕對禁帶正方晶格光子晶體[P]. 廣東: CN104122607A, 2014-10-29.
[98]歐陽征標, 王晶晶. 基于單連桿柱和圓環(huán)柱的大絕對禁帶正方晶格光子晶體[P]. 廣東: CN104101946A, 2014-10-15.
[99]歐陽征標, 金鑫, 林密, 王瓊, 文國華, 王晶晶. 基于光子晶體波導(dǎo)的超高效緊湊T字型環(huán)行器[P]. 廣東: CN104101947A, 2014-10-15.
[100]歐陽征標, 金鑫, 林密, 王瓊, 文國華. 基于光子晶體波導(dǎo)的超高效緊湊十字型環(huán)行器[P]. 廣東: CN104101948A, 2014-10-15.
[101]歐陽征標, 王晶晶. 基于十字連桿柱和圓柱的大絕對禁帶正方晶格光子晶體[P]. 廣東: CN104101949A, 2014-10-15.
[102]歐陽征標, 王晶晶. 一種圓環(huán)桿與平板連桿的二維正方晶格光子晶體[P]. 廣東: CN103901536A, 2014-07-02.
[103]歐陽征標, 金鑫, 余銓強, 文國華. 基于光子晶體波導(dǎo)的十字紅外偏振光橋[P]. 廣東: CN103901537A, 2014-07-02.
[104]陶科玉, 歐陽征標, 鄭耀賢. 信號分插復(fù)用模塊和信號分插復(fù)用器[P]. 廣東: CN103901541A, 2014-07-02.
[105]陶科玉, 歐陽征標, 劉毅. 可控式光路變換器[P]. 廣東: CN103901695A, 2014-07-02.
[106]陶科玉, 歐陽征標. 一種可重構(gòu)分插復(fù)用器及信號分插復(fù)用方法[P]. 廣東: CN103905139A, 2014-07-02.
[107]歐陽征標, 余銓強, 鄭耀賢. 光子晶體全光學可調(diào)諧濾波器[P]. 廣東: CN103472532A, 2013-12-25.
[108]歐陽征標, 金鑫. 光子晶體波導(dǎo)全偏振態(tài)整數(shù)比功率分配器[P]. 廣東: CN102830463A, 2012-12-19.
[109]金鑫, 雷震宇, 歐陽征標. 基于二維光子晶體薄板的三維偏振分束器[P]. 廣東: CN102809782A, 2012-12-05.
[110]歐陽征標, 祁春超. 基于幅度調(diào)制器的可調(diào)諧光學變頻器[P]. 廣東: CN102778799A, 2012-11-14.
[111]歐陽征標, 金鑫. 光子晶體波導(dǎo)TM-偏振分離器[P]. 廣東: CN102650713A, 2012-08-29.
[112]歐陽征標, 金鑫. 光子晶體波導(dǎo)T形偏振分束器[P]. 廣東: CN102650714A, 2012-08-29.
[113]歐陽征標, 金鑫. 光子晶體波導(dǎo)TE-偏振分離器[P]. 廣東: CN102650715A, 2012-08-29.
[114]歐陽征標, 祁春超. 基于超聲光柵的可調(diào)諧光學變頻器[P]. 廣東: CN102621764A, 2012-08-01.
[115]歐陽征標, 祁春超. 基于相位調(diào)制器的可調(diào)諧光學變頻器[P]. 廣東: CN102608824A, 2012-07-25.
[116]歐陽征標, 劉可風. 基于非線性效應(yīng)的光子晶體交叉波導(dǎo)超短單脈沖光發(fā)生器[P]. 廣東: CN102591093A, 2012-07-18.
[117]歐陽征標, 程峰, 劉可風. 分光延遲干涉光子晶體超短單脈沖光發(fā)生器[P]. 廣東: CN102591094A, 2012-07-18.
[118]歐陽征標, 劉可風. 基于光子晶體交叉分光波導(dǎo)的超短單脈沖光發(fā)生器[P]. 廣東: CN102591095A, 2012-07-18.
[119]歐陽征標, 祁春超. 基于多普勒振鏡的可調(diào)諧光學變頻器[P]. 廣東: CN102540624A, 2012-07-04.
[120]歐陽征標, 祁春超. 循環(huán)多普勒移頻非線性差頻式寬帶調(diào)諧太赫茲波發(fā)生器[P]. 廣東: CN102255221A, 2011-11-23.
[121]歐陽征標, 祁春超. 基于調(diào)制器移頻和循環(huán)移頻的寬帶調(diào)諧太赫茲波發(fā)生器[P]. 廣東: CN102255222A, 2011-11-23.
[122]歐陽征標, 祁春超. 循環(huán)調(diào)制移頻非線性差頻式寬帶調(diào)諧太赫茲波發(fā)生器[P]. 廣東: CN102255223A, 2011-11-23.
[123]歐陽征標, 祁春超. 循環(huán)超聲光柵移頻非線性差頻式寬帶調(diào)諧太赫茲波發(fā)生器[P]. 廣東: CN102255224A, 2011-11-23.
[124]歐陽征標, 祁春超. 基于超聲光柵移頻和循環(huán)移頻的寬帶調(diào)諧太赫茲波發(fā)生器[P]. 廣東: CN102244334A, 2011-11-16.
[125]歐陽征標, 祁春超. 基于多普勒頻率調(diào)制器循環(huán)移頻的寬調(diào)諧太赫茲波發(fā)生器[P]. 廣東: CN102244335A, 2011-11-16.
[126]歐陽征標, 王瓊. 光子晶體磁光環(huán)行器及其制備方法[P]. 廣東: CN102043261A, 2011-05-04.
[127]歐陽征標, 許桂雯, 劉遠常. 二維光子晶體可控式“與/或”邏輯門[P]. 廣東: CN102012600A, 2011-04-13.
[128]王瓊, 歐陽征標. 光子晶體多端口環(huán)行器[P]. 廣東: CN101975978A, 2011-02-16.
[129]王瓊, 歐陽征標. 基于磁光腔耦合的光子晶體四端口環(huán)行器[P]. 廣東: CN101788727A, 2010-07-28.
[130]王瓊, 歐陽征標. 光子晶體多端口環(huán)行器[P]. 廣東: CN101788728A, 2010-07-28.
[131]王瓊, 歐陽征標. 光子晶體三端口環(huán)行器[P]. 廣東: CN101726873A, 2010-06-09.
[132]歐陽征標, 林密, 曹恩文. 實現(xiàn)缺陷模均勻分布的方法、結(jié)構(gòu)以及光學器件[P]. 廣東: CN101699326A, 2010-04-28.
[133]歐陽征標, 曹恩文. 光子晶體諧振腔、光子晶體激光器及其制造方法[P]. 廣東: CN101572377, 2009-11-04.
[134]歐陽征標, 劉強. “十”字波導(dǎo)光子晶體光學“或”、“非”、“異或”邏輯門的實現(xiàn)方法[P]. 廣東: CN101251701, 2008-08-27.
[135]歐陽征標, 劉強. 基于密集波分復(fù)用技術(shù)的多路光學并行運算與處理方法[P]. 廣東: CN101252408, 2008-08-27.
[136]歐陽征標, 鐘遠聰. 多腔級聯(lián)光子晶體多通道濾波器[P]. 廣東: CN101246237, 2008-08-20.
[137]歐陽征標, 許桂雯. 利用衍射效應(yīng)的表面微柱陣列結(jié)構(gòu)高效率發(fā)光二極管[P]. 廣東: CN101110461, 2008-01-23.
[138]歐陽征標. THz信號高靈敏度探測器與攝像頭[P]. 廣東: CN1996029, 2007-07-11.
[139]歐陽征標. 二維光子晶體微諧振腔[P]. 廣東: CN1996682, 2007-07-11.
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[7]歐陽征標, 陳治良. 基于內(nèi)置液囊和固定波長的高分辨溫度傳感器[P]. 廣東省: CN105606250B, 2021-07-13.
[8]歐陽征標, 余銓強. 光子晶體全光自與變換邏輯門[P]. 廣東省: CN104483800B, 2021-05-07.
[9]歐陽征標, 余銓強. 光子晶體全光自或變換邏輯門[P]. 廣東省: CN104483803B, 2021-05-07.
[10]歐陽征標, 余銓強. 光子晶體全光多步延遲自或變換邏輯門[P]. 廣東省: CN104536235B, 2021-05-07.
[11]歐陽征標, 余銓強. 光子晶體全光多步延遲與變換邏輯門[P]. 廣東省: CN104536236B, 2021-05-07.
[12]歐陽征標, 余銓強. 光子晶體全光學抗干擾自鎖觸發(fā)開關(guān)[P]. 廣東省: CN104536237B, 2021-05-07.
[13]歐陽征標, 余銓強. 光子晶體全光多步延遲或變換邏輯門[P]. 廣東省: CN104536238B, 2021-05-07.
[14]歐陽征標, 鄭耀賢, 艾月霞. 低損磁光空隙磁表面快模任意方向可控單向拐彎波導(dǎo)[P]. 廣東省: CN106154415B, 2021-05-04.
[15]歐陽征標, 陳治良. 基于外置液囊和固定波長的超高分辨溫度傳感器[P]. 廣東省: CN105571742B, 2021-04-30.
[16]歐陽征標, 陳治良. 基于MIM高靈敏度SPP太赫茲探測器[P]. 廣東省: CN105737975B, 2021-04-30.
[17]歐陽征標, 黃浩. 圓孔式正方晶格光子晶體低折射率單補償散射柱直角波導(dǎo)[P]. 廣東省: CN104950388B, 2021-04-13.
[18]歐陽征標, 陳治良. 基于外置液囊和光譜谷點的超高分辨率溫度傳感器[P]. 廣東省: CN105628247B, 2021-03-16.
[19]歐陽征標, 陳治良. 基于內(nèi)置液囊和光譜谷點的高分辨率溫度傳感器[P]. 廣東省: CN105716729B, 2021-03-16.
[20]歐陽征標, 吳昌義, 金鑫. 基于光子晶體T型波導(dǎo)的橫向輸出磁光調(diào)制器[P]. 廣東省: CN105607305B, 2021-03-02.
[21]歐陽征標, 陳治良. 一種太赫茲波脈沖調(diào)幅信號與光脈沖調(diào)幅信號變換放大器[P]. 廣東省: CN105572797B, 2021-02-26.
[22]歐陽征標, 吳昌義, 金鑫. 光子晶體波導(dǎo)雙路反相光學時鐘信號發(fā)生器[P]. 廣東省: CN105572917B, 2021-02-19.
[23]歐陽征標, 吳昌義, 金鑫. 基于光子晶體十字波導(dǎo)的磁控二選一光路開關(guān)[P]. 廣東省: CN105572918B, 2021-02-19.
[24]歐陽征標, 吳昌義, 金鑫. 基于光子晶體十字波導(dǎo)的磁光調(diào)制器[P]. 廣東省: CN105572919B, 2021-02-19.
[25]歐陽征標, 吳昌義, 金鑫. 基于光子晶體十字波導(dǎo)的雙路反相光學時鐘信號發(fā)生器[P]. 廣東省: CN105572920B, 2021-02-19.
[26]歐陽征標, 吳昌義, 金鑫. 基于光子晶體T型波導(dǎo)的磁控二選一直角輸出光路開關(guān)[P]. 廣東省: CN105572921B, 2021-02-19.
[27]歐陽征標, 吳昌義, 金鑫. 光子晶體T型波導(dǎo)直角輸出雙路反相光學時鐘信號發(fā)生器[P]. 廣東省: CN105572922B, 2021-02-19.
[28]歐陽征標, 吳昌義, 金鑫. 基于光子晶體T型波導(dǎo)的直角輸出磁光調(diào)制器[P]. 廣東省: CN105607303B, 2021-02-19.
[29]歐陽征標, 吳昌義, 金鑫. 基于光子晶體T型波導(dǎo)的橫向輸出磁控二選一光路開關(guān)[P]. 廣東省: CN105607304B, 2021-02-19.
[30]歐陽征標, 鄭耀賢. 無泄漏低損磁光薄膜磁表面快?煽貑蜗蛉我夤諒澆▽(dǎo)[P]. 廣東省: CN106154416B, 2021-02-19.
[31]歐陽征標, 鄭耀賢. 無泄漏低損磁光空隙磁表面快?煽貑蜗蛉我夤諒澆▽(dǎo)[P]. 廣東省: CN106200026B, 2021-02-19.
[32]歐陽征標, 安銀冰, 孫一翎. 一種光子晶體波導(dǎo)對角模干涉FANO共振結(jié)構(gòu)[P]. 廣東省: CN109669242B, 2021-01-01.
[33]歐陽征標, 黃浩. 方孔式正方晶格光子晶體低折射率雙補償散射柱直角波導(dǎo)[P]. 廣東省: CN104950383B, 2020-11-13.
[34]歐陽征標, 黃浩. 圓孔式正方晶格光子晶體低折射率雙補償散射柱直角波導(dǎo)[P]. 廣東省: CN104950384B, 2020-11-13.
[35]歐陽征標, 安銀冰. 一種光子晶體波導(dǎo)四極分裂模干涉FANO共振結(jié)構(gòu)[P]. 廣東省: CN109669241B, 2020-10-13.
[36]歐陽征標, 安銀冰. 一種光子晶體波導(dǎo)正交分裂模干涉FANO共振結(jié)構(gòu)[P]. 廣東省: CN109669239B, 2020-10-02.
[37]歐陽征標, 安銀冰, 吳國城. 一種光子晶體波導(dǎo)六極分裂模干涉FANO共振結(jié)構(gòu)[P]. 廣東省: CN109669240B, 2020-10-02.
[38]歐陽征標, 黃粵龍, 肖漢文, 黃海濤. 基于互補矩形脈沖雙頻光激發(fā)的太赫茲激光器[P]. 廣東省: CN111009816B, 2020-09-08.
[39]歐陽征標, 黃海濤, 鄭耀賢, 肖漢文. 基于單個高溫熱源的太赫茲激光器[P]. 廣東省: CN111029889B, 2020-09-01.
[40]歐陽征標, 黃海濤, 黃粵龍. 基于電磁感應(yīng)熱激發(fā)的太赫茲激光器[P]. 廣東省: CN111009817B, 2020-09-01.
[41]王瓊, 歐陽征標. 可實現(xiàn)Fano共振的多波長可調(diào)型納米傳感器[P]. 廣東省: CN107478606B, 2020-05-01.
[42]王瓊, 歐陽征標. 可實現(xiàn)Fano共振的扇形納米傳感器[P]. 廣東省: CN107478249B, 2019-12-10.
[43]歐陽征標, 鄭耀賢, 艾月霞. 低損型磁光空隙磁表面快模任意角單向拐彎波導(dǎo)[P]. 廣東省: CN106249352B, 2019-04-30.
[44]歐陽征標, 鄭耀賢, 艾月霞. 低損磁光薄膜磁表面快模任意方向可控單向拐彎波導(dǎo)[P]. 廣東省: CN106291812B, 2019-04-30.
[45]歐陽征標, 鄭耀賢. 無泄漏低損型磁光空隙磁表面快模任意角單向拐彎波導(dǎo)[P]. 廣東省: CN106291811B, 2019-04-23.
[46]歐陽征標, 鄭耀賢. 無泄漏低損型磁光薄膜磁表面快模任意角單向拐彎波導(dǎo)[P]. 廣東省: CN106405729B, 2019-04-23.
[47]歐陽征標, 肖棟. 一種用于紅外多波段相干光吸收的超表面[P]. 廣東省: CN107797163B, 2019-04-23.
[48]歐陽征標, 王瓊. 一種引入補償柱的高傳輸率和高隔離度的三端口光環(huán)行器[P]. 廣東省: CN104597630B, 2019-04-23.
[49]歐陽征標, 余銓強, 南.尤格希. 一種左旋圓偏振轉(zhuǎn)換的超材料薄膜[P]. 廣東省: CN105161857B, 2018-10-12.
[50]王瓊, 歐陽征標. 一種引入三角引導(dǎo)柱的寬頻帶三端口光環(huán)行器[P]. 廣東省: CN104597631B, 2018-09-18.
[51]歐陽征標, 陳治良. 基于MIM高靈敏度SPP溫度光開關(guān)[P]. 廣東省: CN105572798B, 2018-08-07.
[52]歐陽征標, 黃浩. 一種高傳輸率高回波損耗高隔離度光子晶體光橋[P]. 廣東省: CN104932055B, 2018-06-05.
[53]歐陽征標, 余銓強. 高對比度光子晶體與邏輯門[P]. 廣東省: CN104503186B, 2018-04-27.
[54]歐陽征標, 余銓強. 光學時鐘發(fā)生器[P]. 廣東省: CN104536239B, 2018-03-16.
[55]歐陽征標, 余銓強. 高對比度光子晶體“或”、“非”、“異或”邏輯門[P]. 廣東省: CN104536234B, 2017-11-14.
[56]歐陽征標, 陳治良. 旋轉(zhuǎn)空心正方柱與旋轉(zhuǎn)三角柱二維正方晶格光子晶體[P]. 廣東省: CN104820264B, 2017-11-14.
[57]歐陽征標, 陳治良. 基于旋轉(zhuǎn)空心正方柱的二維正方晶格光子晶體[P]. 廣東省: CN104849805B, 2017-10-03.
[58]歐陽征標, 陳治良. 基于十字連桿與旋轉(zhuǎn)空心正方柱的二維正方晶格光子晶體[P]. 廣東省: CN104849806B, 2017-10-03.
[59]林密, 歐陽征標, 金鑫, 文國華, 王晶晶. 一種基于完全禁帶型光子晶體波導(dǎo)的X形交叉偏振光橋[P]. 廣東省: CN104360440B, 2017-08-25.
[60]歐陽征標, 王晶晶. 基于單連桿柱和圓環(huán)柱的大絕對禁帶正方晶格光子晶體[P]. 廣東省: CN104101946B, 2017-07-18.
[61]歐陽征標, 文國華. 基于平板光子晶體的高偏振度及高消光比TM光開關(guān)[P]. 廣東省: CN104459988B, 2017-07-18.
[62]王瓊, 歐陽征標. 一種緊湊型六端口光子晶體環(huán)行器[P]. 廣東省: CN104570409B, 2017-07-18.
[63]歐陽征標, 金鑫, 林密, 王瓊, 文國華, 王晶晶. 基于光子晶體波導(dǎo)的超高效緊湊T字型環(huán)行器[P]. 廣東省: CN104101947B, 2017-07-04.
[64]歐陽征標, 黃浩. 基于高折射率內(nèi)圓外方空心柱的正方晶格光子晶體[P]. 廣東省: CN104155718B, 2017-07-04.
[65]歐陽征標, 余銓強, 南.尤格希. 一種右旋圓偏振轉(zhuǎn)換的超材料薄膜[P]. 廣東省: CN105044814B, 2017-07-04.
[66]陶科玉, 歐陽征標. 一種可重構(gòu)分插復(fù)用器及信號分插復(fù)用方法[P]. 廣東省: CN103905139B, 2017-04-26.
[67]歐陽征標, 余銓強. 光子晶體全光與變換邏輯門[P]. 廣東省: CN104483804B, 2017-04-12.
[68]歐陽征標, 余銓強. 光子晶體記憶式全光或與邏輯門[P]. 廣東省: CN104483805B, 2017-04-12.
[69]歐陽征標, 金鑫, 林密, 王瓊, 文國華. 基于光子晶體波導(dǎo)的十字型環(huán)行器[P]. 廣東省: CN104101948B, 2017-04-12.
[70]歐陽征標, 黃浩. 方柱式正方晶格光子晶體高折射率單補償散射柱直角波導(dǎo)[P]. 廣東省: CN104950386B, 2017-03-22.
[71]歐陽征標, 文國華. 一種十字連桿與旋轉(zhuǎn)正方桿的二維正方晶格光子晶體[P]. 廣東省: CN104297842B, 2017-03-22.
[72]歐陽征標, 文國華. 基于平板光子晶體的高消光比TE光開關(guān)[P]. 廣東省: CN104459989B, 2017-03-08.
[73]歐陽征標, 王晶晶. 基于十字連桿柱和圓柱的大絕對禁帶正方晶格光子晶體[P]. 廣東省: CN104101949B, 2017-01-25.
[74]歐陽征標, 黃浩. 圓柱式正方晶格光子晶體高折射率雙補償散射柱直角波導(dǎo)[P]. 廣東省: CN104950389B, 2017-01-25.
[75]歐陽征標, 余銓強. 光子晶體全光學D觸發(fā)器[P]. 廣東省: CN104485928B, 2017-01-18.
[76]歐陽征標, 文國華. 基于平板光子晶體高消光比TM光開關(guān)[P]. 廣東省: CN104375267B, 2017-01-11.
[77]歐陽征標, 文國華. 基于平板光子晶體的高消光比偏振無關(guān)光開關(guān)[P]. 廣東省: CN104459990B, 2017-01-11.
[78]歐陽征標, 余銓強. 光子晶體全光多步延遲自與變換邏輯門[P]. 廣東省: CN104483801B, 2017-01-11.
[79]歐陽征標, 余銓強. 光子晶體全光或變換邏輯門[P]. 廣東省: CN104483802B, 2017-01-11.
[80]歐陽征標, 黃浩. 方柱式正方晶格光子晶體高折射率雙補償散射柱直角波導(dǎo)[P]. 廣東省: CN104950385B, 2017-01-11.
[81]歐陽征標, 黃浩. 圓柱式正方晶格光子晶體高折射率單補償散射柱直角波導(dǎo)[P]. 廣東省: CN104950387B, 2017-01-04.
[82]陶科玉, 歐陽征標, 劉毅. 可控式光路變換器[P]. 廣東省: CN103901695B, 2016-12-28.
[83]陶科玉, 歐陽征標, 鄭耀賢. 信號分插復(fù)用模塊和信號分插復(fù)用器[P]. 廣東省: CN103901541B, 2016-08-31.
[84]歐陽征標, 文國華. 基于平板光子晶體的高偏振度及高消光比TE光開關(guān)[P]. 廣東省: CN104459991B, 2016-08-24.
[85]歐陽征標, 王晶晶. 一種圓環(huán)桿與平板連桿的二維正方晶格光子晶體[P]. 廣東省: CN103901536B, 2016-08-17.
[86]歐陽征標, 金鑫, 余銓強, 文國華. 基于光子晶體波導(dǎo)的十字紅外偏振光橋[P]. 廣東省: CN103901537B, 2016-08-17.
[87]歐陽征標, 王晶晶. 基于三連桿柱和圓環(huán)柱的大絕對禁帶正方晶格光子晶體[P]. 廣東省: CN104122607B, 2016-01-20.
[88]歐陽征標, 劉強. 基于密集波分復(fù)用技術(shù)的多路光學并行運算與處理方法[P]. 廣東省: CN101252408B, 2015-06-17.
[89]歐陽征標, 余銓強, 鄭耀賢. 光子晶體全光學可調(diào)諧濾波器[P]. 廣東省: CN103472532B, 2015-05-13.
[90]歐陽征標, 劉可風. 基于光子晶體交叉分光波導(dǎo)的超短單脈沖光發(fā)生器[P]. 廣東省: CN102591095B, 2015-04-08.
[91]歐陽征標, 金鑫. 光子晶體波導(dǎo)TM-偏振分離器[P]. 廣東省: CN102650713B, 2015-04-08.
[92]歐陽征標, 金鑫. 光子晶體波導(dǎo)T形偏振分束器[P]. 廣東省: CN102650714B, 2015-04-08.
[93]歐陽征標, 金鑫. 光子晶體波導(dǎo)TE-偏振分離器[P]. 廣東省: CN102650715B, 2015-04-08.
[94]歐陽征標, 祁春超. 基于相位調(diào)制器的可調(diào)諧光學變頻器[P]. 廣東省: CN102608824B, 2015-02-04.
[95]歐陽征標, 金鑫. 光子晶體波導(dǎo)全偏振態(tài)整數(shù)比功率分配器[P]. 廣東省: CN102830463B, 2014-07-16.
[96]歐陽征標, 祁春超. 基于超聲光柵的可調(diào)諧光學變頻器[P]. 廣東省: CN102621764B, 2014-07-02.
[97]歐陽征標, 祁春超. 基于幅度調(diào)制器的可調(diào)諧光學變頻器[P]. 廣東省: CN102778799B, 2014-05-14.
[98]歐陽征標, 劉可風. 基于非線性效應(yīng)的光子晶體交叉波導(dǎo)超短單脈沖光發(fā)生器[P]. 廣東省: CN102591093B, 2014-02-05.
[99]金鑫, 雷震宇, 歐陽征標. 基于二維光子晶體薄板的三維偏振分束器[P]. 廣東省: CN102809782B, 2013-12-25.
[100]歐陽征標, 程峰, 劉可風. 分光延遲干涉光子晶體超短單脈沖光發(fā)生器[P]. 廣東省: CN102591094B, 2013-12-18.
[101]歐陽征標, 王瓊. 光子晶體磁光環(huán)行器及其制備方法[P]. 廣東省: CN102043261B, 2013-07-03.
[102]歐陽征標, 祁春超. 基于多普勒頻率調(diào)制器循環(huán)移頻的寬調(diào)諧太赫茲波發(fā)生器[P]. 廣東省: CN102244335B, 2013-05-22.
[103]歐陽征標, 許桂雯, 劉遠常. 二維光子晶體可控式“與/或”邏輯門[P]. 廣東省: CN102012600B, 2012-11-07.
[104]歐陽征標, 祁春超. 基于超聲光柵移頻和循環(huán)移頻的寬帶調(diào)諧太赫茲波發(fā)生器[P]. 廣東省: CN102244334B, 2012-09-26.
[105]歐陽征標, 祁春超. 基于調(diào)制器移頻和循環(huán)移頻的寬帶調(diào)諧太赫茲波發(fā)生器[P]. 廣東省: CN102255222B, 2012-09-12.
[106]歐陽征標, 祁春超. 循環(huán)調(diào)制移頻非線性差頻式寬帶調(diào)諧太赫茲波發(fā)生器[P]. 廣東省: CN102255223B, 2012-09-12.
[107]歐陽征標, 祁春超. 循環(huán)多普勒移頻非線性差頻式寬帶調(diào)諧太赫茲波發(fā)生器[P]. 廣東省: CN102255221B, 2012-08-15.
[108]王瓊, 歐陽征標. 光子晶體多端口環(huán)行器[P]. 廣東省: CN101975978B, 2012-08-15.
[109]王瓊, 歐陽征標. 光子晶體三端口環(huán)行器[P]. 廣東省: CN101726873B, 2012-08-08.
[110]歐陽征標, 祁春超. 循環(huán)超聲光柵移頻非線性差頻式寬帶調(diào)諧太赫茲波發(fā)生器[P]. 廣東省: CN102255224B, 2012-08-08.
[111]王瓊, 歐陽征標. 基于磁光腔耦合的光子晶體四端口環(huán)行器[P]. 廣東省: CN101788727B, 2011-11-09.
[112]歐陽征標, 曹恩文. 光子晶體諧振腔、光子晶體激光器及其制造方法[P]. 廣東省: CN101572377B, 2011-11-09.
[113]歐陽征標, 鐘遠聰. 多腔級聯(lián)光子晶體多通道濾波器[P]. 廣東省: CN101246237B, 2011-07-27.
[114]歐陽征標, 林密, 曹恩文. 實現(xiàn)缺陷模均勻分布的方法、結(jié)構(gòu)以及光學器件[P]. 廣東省: CN101699326B, 2011-04-06.
[115]歐陽征標, 劉強. “十”字波導(dǎo)光子晶體光學“或”、“非”、“異或”邏輯門的實現(xiàn)方法[P]. 廣東省: CN101251701B, 2010-06-02.
實用新型:
[1]鄭國梁, 鄧想全, 徐世祥, 吳慶陽, 歐陽征標. 一種基于電光衍射的定向分波器及波分復(fù)用系統(tǒng)[P]. 廣東: CN204496145U, 2015-07-22.
[2]陶科玉, 歐陽征標, 鄭耀賢. 信號分插復(fù)用模塊和信號分插復(fù)用器[P]. 廣東: CN203012182U, 2013-06-19.
[3]歐陽征標. THz波普通靈敏度攝像頭[P]. 廣東: CN201100866, 2008-08-13.
論文專著:
發(fā)表英文期刊論文:
[1]Asif, Muhammad; Wang, Qiong*; Ouyang, Zhengbiao*; Lin, Mi; Liang, Zixian.Ultra-Wideband Terahertz Wave Absorber Using Vertically Structured IGIGIM Metasurface.Crystals, 2024, 14(1): 22.
[2]Arshad, Naila; Irshad, Muhammad Sultan; Alomar, Muneerah; Guo, Jinming; Asghar, M. Sohail; Mushtaq, Naveed; Yousaf, M. A. K.; Ghazanfar, Uzma; Shah, Matiullah; Wang, Xianbao; Hao, Yabin; Do, Lien Thi; Dao, Van-Duong*; Wang, Hao*; Ouyang, Zhengbiao*; Zhang, Han*.Exploring perovskite oxide for advancing salt-resistant photothermal membranes and reliable thermoelectric generators.Chemical Engineering Journal, 2023, 475: 146200.
[3]Darthy, R. Rachel; Venkateswaran, C.; Subramanian, V.; Ouyang, Zhengbiao; Yogesh, N.*.Accessing new avenues of photonic bandgaps using two-dimensional non-Moire geometries.Scientific Reports, 2023, 13(1): 17077.
[4]Arshad, Naila; Irshad, Muhammad Sultan; Asghar, M. Sohail; Alomar, Muneerah; Tao, Junyang; Shah, M. A. K. Yousaf; Wang, Xianbao; Guo, Jinming; Wageh, S.; Al-Hartomy, Omar A.; Kalam, Abul; Hao, Yabin*; Ouyang, Zhengbiao*; Zhang, Han*.2D MXenes Embedded Perovskite Hydrogels for Efficient and Stable Solar Evaporation.GLOBAL CHALLENGES, 2023, 7(9).
[5]An, Yinbing; Fu, Tao; Guo, Chunyu; Pei, Jihong; Ouyang, Zhengbiao*.Two Individual Super-Bound State Modes within Band Gap with Ultra-High Q Factor for Potential Sensing Applications in the Terahertz Wave Band.Sensors (Switzerland), 2023, 23(15): 6737.
[6]An, Yinbing; Fu, Tao; Guo, Chunyu; Pei, Jihong; Ouyang, Zhengbiao*.Superbound state in photonic bandgap and its application to generate complete tunable SBS-EIT, SBS-EIR and SBS-Fano.Optics Express, 2023, 31(12): 20572-20585.
[7]Laxmi, Vijay; Tyagi, Deepika; Parveen, Abida; Singh, Lalit; Ouyang, Zhengbiao*.Silicon/graphene-ITO multiple heterojunctions and 1D PhC waveguide-based photodetection for mid-NIR IPE with high responsivity.Optics Communications, 2023, 530: 129142.
[8]Elshahat, Sayed*; Mohamed, Zain Elabdeen A.; Abd-Elnaiem, Alaa M.; Ouyang, Zhengbiao*; Almokhtar, Mohamed*.One-dimensional topological photonic crystal for high-performance gas sensor.Micro and Nanostructures, 2022, 172: 207447.
[9]Fu, Lixin; Lin, Mi*; Liang, Zixian; Wang, Qiong; Zheng, Yaoxian; Ouyang, Zhengbiao.The Transmission Properties of One-Dimensional Photonic Crystals with Gradient Materials.Materials, 2022, 15(22): 8049.
[10]Zheng, Yaoxian; Wang, Qiong; Lin, Mi; Bibbo, Luigi; Ouyang, Zhengbiao*.Twisted Bands with Degenerate Points of Photonic Hypercrystals in Infrared Region.Nanomaterials, 2022, 12(12): 1985.
[11]Pavithra, M.; Ravichandran, K.; Subramanian, V; Ouyang, Zhengbiao; Yogesh, N.*.Tailoring the terahertz far-field radiation pattern based on asymmetric transmission of linearly polarized waves in metasurface tiles.Journal of the Optical Society of America B-Optical Physics, 2022, 39(3): 771-778.
[12]Zheng, Yaoxian; Wang, Qiong; Lin, Mi; Ouyang, Zhengbiao*.Enhancement of Self-Collimation Effect in Photonic Crystal Membranes Using Hyperbolic Metamaterials.Nanomaterials, 2022, 12(3): 555.
[13]Laxmi, Vijay; Parveen, Abida; Tyagi, Deepika; Singh, Lalit; Ouyang, Zhengbiao*.Nanophotonic modulator based on Silicon-ITO heterojunction and slot waveguide with 2D-graphene sheet.Journal of Optics (India), 2022.
[14]Wang, Qiong*; Ouyang, Zhengbiao; Lin, Mi; Zheng, Yaoxian.High-Quality Graphene-Based Tunable Absorber Based on Double-Side Coupled-Cavity Effect.Nanomaterials, 2021, 11(11): 2824.
[15]Zhang, Chi; Liu, Qiang; Peng, Xiao; Ouyang, Zhengbiao; Shen, Suling*.Sensitive THz sensing based on Fano resonance in all-polymeric Bloch surface wave structure.Nanophotonics, 2021, 10(15): 3879-3888.
[16]Ahmad, Waqas; Liu, Jidong; Jiang, Jizhou; Hao, Qiaoyan; Wu, Di; Ke, Yuxuan; Gan, Haibo; Laxmi, Vijay; Ouyang, Zhengbiao; Ouyang, Fangping; Wang, Zhuo; Liu, Fei; Qi, Dianyu; Zhang, Wenjing*.Strong Interlayer Transition in Few-Layer InSe/PdSe2 van der Waals Heterostructure for Near-Infrared Photodetection.Advanced Functional Materials, 2021, 31(43): 2104143.
[17]Liu, Yan; Huang, Rui; Ouyang, Zhengbiao*.Numerical Investigation of Graphene and STO Based Tunable Terahertz Absorber with Switchable Bifunctionality of Broadband and Narrowband Absorption.Nanomaterials, 2021, 11(8): 2044.
[18]Elshahat, Sayed; Abood, Israa; Esmail, Mohamed Saleh M.; Ouyang, Zhengbiao; Lu, Cuicui*.One-Dimensional Topological Photonic Crystal Mirror Heterostructure for Sensing.Nanomaterials, 2021, 11(8): 1940.
[19]Liu, Yan; Huang, Rui; Ouyang, Zhengbiao*.Terahertz absorber with dynamically switchable dual-broadband based on a hybrid metamaterial with vanadium dioxide and graphene.Optics Express, 2021, 29(13): 20839-20850.
[20]Elshahat, Sayed; Abood, Israa; Liang, Zixian; Pei, Jihong; Ouyang, Zhengbiao*.Elongated-Hexagonal Photonic Crystal for Buffering, Sensing, and Modulation.Nanomaterials, 2021, 11(3): 809.
[21]Lin, Mi; Fu, Lixin; Ahmed, Shakeel; Wang, Qiong; Zheng, Yaoxian; Liang, Zixian; Ouyang, Zhengbiao*.Polarization-Independent Circulator Based on Composite Rod of Ferrite and Plasma in Photonic Crystal Structure.Nanomaterials, 2021, 11(2): 381.
[22]Elshahat, Sayed; Abood, Israa; Liang, Zixian; Pei, Jihong; Ouyang, Zhengbiao*.Dispersion engineering of W2 steeple-house-defect waveguide photonic crystal.Results in Physics, 2020, 19: 103547.
[23]Elshahat, Sayed; Abood, Israa; Liang, Zixian; Pei, Jihong; Ouyang, Zhengbiao*.Futuristic elongated-hexagonal photonic crystal waveguide for slow light.Optics Communications, 2020, 474: 126082.
[24]Abood, Israa; Elshahat, Sayed; Ouyang, Zhengbiao*.High Figure of Merit Optical Buffering in Coupled-Slot Slab Photonic Crystal Waveguide with Ionic Liquid.Nanomaterials, 2020, 10(9): 1742.
[25]Darthy, R. Rachel; Venkateswaran, C.; Subramanian, V.; Ouyang, Zhengbiao; Yogesh, N.*.Fabry-Perot modes associated with hyperbolic-like dispersion in dielectric photonic crystals and demonstration of a bending angle sensor at microwave frequencies.Scientific Reports, 2020, 10(1): 11117.
[26]Liu, Qiang*; Lu, Huihui; Bibbo, Luigi; Wang, Qiong; Lin, Mi; Tao, Keyu; Albin, Sacharia*; Ouyang, Zhengbiao*.Hybrid plasmonic-phononic cavity design for enhanced optomechanical coupling in lithium niobate.Applied Nanoscience, 2020, 10(5): 1395-1407.
[27]Amaljith, C. K.; Venkateswaran, C.; Subramanian, V; Ouyang, Zhengbiao; Yogesh, N.*.Anisotropic asymmetric transmission of circularly polarized terahertz waves in a three-dimensional spline assembly.Optics Letters, 2020, 45(8): 2315-2318.
[28]An, Yinbing; Gao, Zhen; Ouyang, Zhengbiao.Surface wave photonic quasicrystal.Applied Physics Letters, 2020, 116(15): 151104.
[29]An, Yinbing; Fu, Tao; Liu, Qiang; Ouyang, Zhengbiao*.High-Q Fano resonance based on degenerate modes in a single dielectric point-defect photonic crystal cavity with x-y asymmetry.Applied Physics Express, 2020, 13(3): 032006.
[30]Zhang, Chi; Shen, Suling; Wang, Qiong; Lin, Mi; Ouyang, Zhengbiao; Liu, Qiang.Highly Sensitive THz Gas-Sensor Based on the Guided Bloch Surface Wave Resonance in Polymeric Photonic Crystals.Materials, 2020, 13(5): 1217.
[31]Khan, Karim*; Tareen, Ayesha Khan; Aslam, Muhammad; Zhang, Yupeng; Wang, Renheng; Khan, Sayed Ali; Khan, Qudrat Ullah; Rauf, Muhammad; Zhang, Han*; Ouyang, Zhengbiao*; Guo, Zhongyi*.Facile Synthesis of Mayenite Electride Nanoparticles Encapsulated in Graphitic Shells Like Carbon Nano Onions: Non-noble-metal Electrocatalysts for Oxygen Reduction Reaction (ORR).Frontiers in Chemistry, 2020, 7: 934.
[32]Muhammad, Naseer; Ouyang, Zhengbiao.Plasmon-induced anti-transparency modes in metasurface.Applied Nanoscience, 2020, 10(1): 15-22.
[33]Elshahat, Sayed; Abood, Israa; Liang, Zixian; Pei, Jihong; Ouyang, Zhengbiao*.Sporadic-Slot Photonic-Crystal Waveguide for All-Optical Buffers With Low-Dispersion, Distortion, and Insertion Loss.IEEE Access, 2020, 8: 77689-77700.
[34]Khan, Karim*; Tareen, Ayesha Khan; Aslam, Muhammad; Khan, Sayed Ali; Khan, Qasim; Khan, Qudrat Ullah; Saeed, Muhammad; Saleemi, Awais Siddique; Kiani, Maryam; Ouyang, Zhengbiao; Zhang, Han*; Guo, Zhongyi*.Fe-doped mayenite electride composite with 2D reduced Graphene Oxide: As a non-platinum based, highly durable electrocatalyst for Oxygen Reduction Reaction.Scientific Reports, 2019, 9(1): 19809.
[35]Khan, Karim*; Tareen, Ayesha Khan; Aslam, Muhammad; Zhang, Yupeng; Wang, Renheng; Ouyang, Zhengbiao*; Gou, Zhongyi*; Zhang, Han*.Recent advances in two-dimensional materials and their nanocomposites in sustainable energy conversion applications.Nanoscale, 2019, 11(45): 21622-21678.
[36]Khan, Karim*; Tareen, Ayesha Khan*; Aslam, Muhammad; Khan, Qasim; Khan, Sayed Ali; Khan, Qudrat Ullah; Saleemi, Awais Siddique; Wang, Renheng; Zhang, Yupeng; Guo, Zhongyi; Zhang, Han*; Ouyang, Zhengbiao*.Novel Two-Dimensional Carbon-Chromium Nitride-Based Composite as an Electrocatalyst for Oxygen Reduction Reaction.Frontiers in Chemistry, 2019, 7: 738.
[37]Elshahat, Sayed; Abood, Israa; Khan, Karim; Yadav, Ashish; Ouyang, Zhengbiao*.High-capability micro-optical buffer based on coupled hexagonal cavity in photonic crystal waveguide.Applied Nanoscience, 2019, 9(8): 1963-1970.
[38]Muhammad, Naseer; Tang, Xiaopin; Fu, Tao; Liu, Qiang; Ouyang, Zhengbiao*。Broadband polarization-insensitive absorption by metasurface with metallic pieces for energy harvesting application.Materials Science and Engineering B-Solid State Materials for Advanced Technology, 2019, 249: 114419.
[39]Bibbò, Luigi; Liu, Qiang; Khan, Karim; Yadav, Ashish; Elshahat, Sayed; Abood, Israa; Ouyang, Zhengbiao*.Radiation-direction steerable nanoantennae.SN Applied Sciences, 2019, 1(8): 844.
[40]Muhammad, Naseer; Ouyang, Zhengbiao*; Tang, Xiaopin; Liu, Qiang.Broadband Wide-Angle Incident Light Absorption by Metallic Loop Metasurfaces Based on Electro-Optic Substrate.IEEE Photonics Technology Letters, 2019, 31(13): 1068-1071.
[41]Wang, Qiong; Ouyang, Zhengbiao*; Liu, Qiang; Lin, Mi.Densely Distributed Multiple Resonance Modes in a Fan-Shaped Plasmonic Nanostructure Demonstrated by FEM Simulations.Nanomaterials, 2019, 9(7): 975.
[42]Khan, Karim*; Tareen, Ayesha Khan; Aslam, Muhammad; Thebo, Khalid Hussain; Khan, Usman; Wang, Renheng; Shams, S Saqib; Han, Zhang*; Ouyang, Zhengbiao*.A comprehensive review on synthesis of pristine and doped inorganic room temperature stable mayenite electride, [Ca24Al28O64](4 )(e(-))(4) and its applications as a catalyst.Progress in Solid State Chemistry, 2019, 54: 1-19.
[43]Abood, Israa; Elshahat, Sayed; Khan, Karim; Bibbo, Luigi; Yadav, Ashish; Ouyang, Zhengbiao*.Slow light with high normalized delay-bandwidth product in low-dispersion photonic-crystal coupled-cavity waveguide.Optics Communications, 2019, 439: 181-186.
[44]Wang, Qiong; Ouyang, Zhengbiao*; Sun, Yiling; Lin, Mi; Liu, Qiang.Linearly Tunable Fano Resonance Modes in a Plasmonic Nanostructure with a Waveguide Loaded with Two Rectangular Cavities Coupled by a Circular Cavity.Nanomaterials, 2019, 9(5): 678.
[45]Wang, Qiong; Ouyang, Zhengbiao*; Sun, Yiling; Lin, Mi; Liu, Qiang.Linearly Tunable Fano Resonance Modes in a Plasmonic Nanostructure with a Waveguide Loaded with Two Rectangular Cavities Coupled by a Circular Cavity.Nanomaterials, 2019, 9(5): 678.
[46]Bibbo, Luigi; Liu, Qiang; Khan, Karim; Yadav, Ashish; Elshahat, Sayed; Deng, Zi Lan; Ouyang, Zhengbiao*.High-speed amplitude modulator with a high modulation index based on a plasmonic resonant tunable metasurface.Applied Optics, 2019, 58(10): 2687-2694.
[47]Muhammad, Naseer; Ouyang, Zhengbiao*; Liu, Qiang; Tang, Xiaopin; Deng, Zi Lan; Khan, Adnan Daud.Sensitive label-free sensor with high figure of merit based on plasmonic metasurface with unit cell of double two-split nanorings.Journal of Materials Science, 2019, 54(8): 6301-6309.
[48]Khan, Karim*; Tareen, Ayesha Khan; Khan, Usman; Nairan, Adeela; Elshahat, Sayed; Muhammad, Naseer; Saeed, Muhammad; Yadav, Ashish; Bibbo, Luigi; Ouyang, Zhengbiao*.Single step synthesis of highly conductive room-temperature stable cation-substituted mayenite electride target and thin film.Scientific Reports, 2019, 9: 4967.
[49]Muhammad, Naseer; Liu, Qiang; Tang, Xiaopin; Fu, Tao; Daud Khan, Adnan; Ouyang, Zhengbiao*.Highly Flexible and Voltage Based Wavelength Tunable Biosensor.Physica Status Solidi A-Applications and Materials Science, 2019, 216(6): 1800633.
[50]Elshahat, Sayed; Abood, Israa; Khan, Karim; Yadav, Ashish; Bibbo, Luigi; Ouyang, Zhengbiao*.Five-Line Photonic Crystal Waveguide for Optical Buffering and Data Interconnection of Picosecond Pulse.Journal of Lightwave Technology, 2019, 37(3): 788-798.
[51]Xiao, Dong; Liu, Qiang; Lei, Lei; Sun, Yiling; Ouyang, Zhengbiao; Tao, Keyu*.Coupled Resonance Enhanced Modulation for a Graphene-Loaded Metamaterial Absorber.Nanoscale Research Letters, 2019, 14: 32.
[52]Muhammad, Naseer; Fu, Tao; Liu, Qiang; Tang, Xiaopin; Deng, Zi Lan; Ouyang, Zhengbiao*.Plasmonic Metasurface Absorber Based on Electro-Optic Substrate for Energy Harvesting.Materials, 2018, 11(11): 2315.
[53]Tang, Xiaopin; Yang, Ziqiang*; Khan, Karim; Muhammad, Naseer; Ouyang, Zhengbiao*.Theoretical and Cold-Test Investigation of a Four-Port High-Frequency System for a 0.14-THz Dual-Sheet-Beam Backward-Wave Oscillator.IEEE Transactions on Electron Devices, 2018, 65(11): 5068-5074.
[54]Khan, Karim*; Tareen, Ayesha Khan; Li, Jia; Khan, Usman; Nairan, Adeela; Yuan, Yao; Zhang, Xuyang; Yang, Minghui; Ouyang, Zhengbiao*.Facile synthesis of tin-doped mayenite electride composite as a non-noble metal durable electrocatalyst for oxygen reduction reaction (ORR).Dalton Transactions, 2018, 47(38): 13498-13506.
[55]Xu, Xizhen; He, Jun*; Liao, Changrui; Yang, Kaiming; Gu, Kuikui; Li, Chi; Zhang, Yunfang; Ouyang, Zhengbiao; Wang, Yiping.Sapphire fiber Bragg gratings inscribed with a femtosecond laser line-by-line scanning technique.Optics Letters, 2018, 43(19): 4562-4565.
[56]Wang, Qiong; Ouyang, Zhengbiao*; Lin, Mi; Liu, Qiang.Independently Tunable Fano Resonances Based on the Coupled Hetero-Cavities in a Plasmonic MIM System.Materials, 2018, 11(9): 1675.
[57]Elshahat, Sayed; Abood, Israa; Khan, Karim; Yadav, Ashish; Wang, Qiong; Liu, Qiang; Lin, Mi; Tao, Keyu; Ouyang, Zhengbiao*.Ultra-wideband slow light transmission with high normalized delay bandwidth product in W3 photonic crystal waveguide.Superlattices and Microstructures, 2018, 121: 45-54.
[58]Elshahat, Sayed; Khan, Karim; Yadav, Ashish; Bibbo, Luigi; Ouyang, Zhengbiao*.Slow-light transmission with high group index and large normalized delay bandwidth product through successive defect rods on intrinsic photonic crystal waveguide.Optics Communications, 2018, 418: 73-79.
[59]Xi, Xiang; Lin, Mi*; Qiu, Wenbiao; Ouyang, Zhengbiao; Wang, Qiong; Liu, Qiang.Polarization-independent circulator based on ferrite and plasma materials in two-dimensional photonic crystal.Scientific Reports, 2018, 8(1): 7827.
[60]Wang, Qiong; Ouyang, Zhengbiao*; Sun, Yiling; Lin, Mi; Liu, Qiang; Zheng, Guoliang; Fan, Junxing.Tunable Nanosensor Based on Fano Resonances Created by Changing the Deviation Angle of the Metal Core in a Plasmonic Cavity.Sensors, 2018, 18(4): 1026.
[61]Khan, Karim*; Tareen, Ayesha Khan; Elshahat, Sayed; Yadav, Ashish; Khan, Usman; Yang, Minghui; Bibbo, Luigi; Ouyang, Zhengbiao.Facile synthesis of a cationic-doped [Ca24Al28O64](4 )(4e(-)) composite via a rapid citrate sol-gel method.Dalton Transactions, 2018, 47(11): 3819-3830.
[62]Qiang Liu*; Luigi Bibbó; Sacharia Albin*; Qiong Wang; Mi Lin; Huihui Lu; Ouyang, Zhengbiao*.Plasmonic waveguide design for the enhanced forward stimulated Brillouin scattering in diamond.Science Reports, 2018, 8(1): 88.
[63]Khan, Karim*; Tareen, Ayesha Khan; Elshahat, Sayed; Muhammad, Naseer; Li, Jia; Aboodd, Israa; Bibbo, Luigi; Yadav, Ashish; Sagar, Rizwan Ur Rehman; Khan, Usman; Ouyang, Zhengbiao*.Facile metal-free reduction-based synthesis of pristine and cation-doped conductive mayenite.RSC Advances, 2018, 8(43): 24276-24285.
[64]Huang, Hao; Ouyang, Zhengbiao*.General method for eliminating wave reflection in 2D photonic crystal waveguides by introducing extra scatterers based on interference cancellation of waves.Optics Communications, 2018, 406: 260-270.
[65]Asadi, Reza*; Ouyang, Zhengbiao*.Nonlinear digital out-of-plane waveguide coupler based on nonlinear scattering of a single graphene layer.Optics Communications, 2018, 411: 148-151.
[66]Naseer Muhammad; Adnan Daud Khan; Zi-Lan Deng; Karim Khan; Ashish Yadav; Qiang Liu; Ouyang, Zhengbiao*.Plasmonic Spectral Splitting in Ring/Rod Metasurface.Nanomaterials, 2017, 7(11): 397.
[67]Bibbo, Luigi; Khan, Karim; Liu, Qiang; Lin, Mi; Wang, Qiong; Ouyang, Zhengbiao*.Tunable narrowband antireflection optical filter with a metasurface.Photonics Research, 2017, 5(5): 500-506.
[68]Luo, Hanjun; Ouyang, Zhengbiao*; Liu, Qiang; Chen, Zhiliang; Lu, Hualan.Cumulative detection probabilities and range accuracy of a pulsed Geiger-mode avalanche photodiode laser ranging system.Journal of Modern Optics, 2017, 64(18): 1898-1906.
[69]Xiang Xi; Mi Lin; Wenbiao Qiu; Zhengbiao Ouyang; Qiong Wang; Qiang Liu.Compact, low-loss and broadband photonic crystal circulator based on a star-type ferrite rod.Results in Physics, 2017, 7: 4303-4309.
[70]Xiao, Dong; Tao, Keyu; Wang, Qiong; Ai, Yuexia; Ouyang, Zhengbiao*.Metasurface for Multiwavelength Coherent Perfect Absorption.IEEE Photonics Journal, 2017, 9(1): 7776787.
[71]Fan, Junxing; Xiao, Dong; Wang, Qiong; Liu, Qiang; Ouyang, Zhengbiao*.Wide-angle broadband terahertz metamaterial absorber with a multilayered heterostructure.Applied Optics, 2017, 56(15): 4388-4391.
[72]Luo, Hanjun; Ouyang, Zhengbiao*; Liu, Qiang; Lu, Zhenli; Li, Bin.Improved cumulative probabilities and range accuracy of a pulsed Geiger-mode avalanche photodiode laser ranging system with turbulence effects.Applied Optics, 2017, 56(29): 8216-8223.
[73]Fu, Tao; Yang, Zi-Qiang; Ouyang, Zheng-Biao*.Design and Experimental Demonstration of Cherenkov Radiation Source Based on Metallic Photonic Crystal Slow Wave Structure.Journal of Infrared Millimeter and Terahertz Waves, 2016, 37(11): 1061-1068.
[74]Lin, Mi; Xi, Xiang; Qiu, Wenbiao; Ai, Yuexia; Wang, Qiong; Liu, Qiang; Ouyang, Zhengbiao*.Star-type polarizer with equal-power splitting function for each polarization based on polarization-dependent defects in twod-imensional photonic-crystal waveguides.Optics Express, 2016, 24(21): 23917-23924.
[75]Hao Huang; Zhengbiao Ouyang.General method for eliminating wave reflection in 2D photonic crystal waveguides by introducing extra scatterers based on interference cancellation of waves.Optics Communications, 2016.
[76]Wang, Yong; Zhang, Dengguo*; Xu, Shixiang; Ouyang, Zhengbiao; Li, Jingzhen.Low-loss Y-junction two-dimensional magneto-photonic crystals circulator using a ferrite cylinder.Optics Communications, 2016, 369: 1-6.
[77]Deng, Zi-Lan; Fu, Tao; Ouyang, Zhengbiao; Wang, Guo Ping*.Trimeric metasurfaces for independent control of bright and dark modes of Fano resonances.Applied Physics Letters, 2016, 108(8): 081109.
[78]Lin, Mi; Qiu, Wenbiao; Xi, Xiang; Ouyang, Zhengbiao*.Polarization selective power splitters for TE and TM waves based on two-dimensional photonic crystals.Acta Optica Sinica, 2016, 36(12): 1223001.
[79]Fu, Tao; Ouyang, Zhengbiao.Simulation of cherenkov radiation source in a plasma-filled metallic photonic crystal.Acta Physica Sinica, 2016, 65(7): 074208.
[80]Deng, Zi-Lan; Yogesh, Natesan; Chen, Xiao-Dong; Chen, Wen-Jie; Dong, Jian-Wen; Ouyang, Zhengbiao; Wang, Guo Ping*.Full controlling of Fano resonances in metal-slit superlattice.SCIENTIFIC REPORTS, 2015, 5: 18461.
[81]Qiong Wang; Zhengbiao Ouyang*; Mi Lin; Qiang Liu.Compact photonic crystal circulator with flat-top transmission band created by cascading magneto-optical resonance cavities.Applied Optics, 2015, 54(33): 9741-9746.
[82]Reza Asadi; Zhengbiao Ouyang*.Low Threshold, Wide Dynamic Range, Tunable, All-Optical Self-Modulator Based on Fano Resonance and Out-of-Plane Coupling in a Slab Photonic Crystal with a Graphene Layer.Journal of Nanotechnology, 2015, 2015(2015).
[83]Wang, Qiong; Ouyang, Zhengbiao*; Zheng, Yaoxian; Lin, Mi; Zheng, Guoliang.Broadband six-port circulator based on magneto-optical-rod ring in photonic crystal.Applied Physics B: Lasers and Optics , 2015, 121(3): 385-389.
[84]Zhou, Xiaoyi; Liu, Dingwen; Sun, Yiling*; Ouyang, Zhengbiao.Three-visible-light wave combiner based on photonic crystal microcavities.Applied Optics, 2015, 54(22): 6783-6786.
[85]Asadi, R.; Ouyang, Z.*; Mohammd, M. M.A compact, all-optical, THz wave generator based on self-modulation in a slab photonic crystal waveguide with a single sub-nanometer graphene layer.Nanoscale, 2015, 7(26): 11379-11385.
[86]Luo, Hanjun*; Xu, Huigang; Xu, Benlian; Ouyang, Zhengbiao; Fu, Yadan.False alarm suppression of multipulsed laser ranging system with Geiger-mode detector.Applied Optics, 2015, 54(17): 5513-5519.
[87]Yogesh, N.; Fu, Tao; Lan, Feng; Ouyang, Zhengbiao*.Far-infrared circular polarization and polarization filtering based on fermat's spiral chiral metamaterial.IEEE Photonics Journal, 2015, 7(3): 4600212.
[88]Yogesh, N.; Yu, Quanqiang; Ouyang, Zhengbiao*.Single- and multi-beam confinement of electromagnetic waves in a photonic crystal open cavity providing rapid heating and high temperatures.Photonics and Nanostructures-Fundamentals and Applications, 2015, 15(3): 89-98.
[89]Wang, Jing-Jing; Ouyang, Zheng-Biao; Wen, Guo-Hua; Huang, Hao; Lin, Mi; Wang, Qiong.2D square-lattice photonic crystal based on circular-ring cylinders and thin cross plates suitable for optical integrated circuits.Acta Photonica Sinica, 2015, 44(4): 0423002.
[90]Lin, Mi; Jin, Xin; Ouyang, Zhengbiao*; Zheng, Guoliang; Wen, Guohua.Y-type polarization beam splitter based on polarization-selective defects within crystal waveguides in a square-lattice photonic crystal with solid rods.Chinese Optics Letters, 2015, 13: s11301.
[91]Lin, Mi; Jin, Xin; Ouyang, Zhengbiao*; Wang, Qiong; Wen, Guohua; Zhang, Dengguo.Polarization optical bridge based on two-dimensional photonic crystals and Bragg effect of defect rods.Applied Physics B: Lasers and Optics , 2015, 118(1): 145-151.
[92]Ouyang, Zhengbiao; Zhang, Shi-Chang.Nonlinear study of an ion-channel guiding free-electron laser.Physics of Plasmas, 2015, 22(4): 043111.
[93]Asadi, Reza; Ouyang, Zhengbiao*.Low Threshold, Wide Dynamic Range, Tunable, All-Optical Self-Modulator Based on Fano Resonance and Out-of-Plane Coupling in a Slab Photonic Crystal with a Graphene Layer.Journal of Nanotechnology, 2015, 2015: 767495.
[94]Fu, Tao; Yang, Zi-Qiang; Ouyang, Zhengbiao.Dispersion properties of plasma-filled metallic photonic crystal slow-wave structure.Acta Physica Sinica, 2015, 64(17): 174205.
[95]Liu, Dingwen; Sun, Yiling*; Ouyang, Zhengbiao.Three-visible-light wave combiner based on photonic crystal waveguides.Applied Optics, 2014, 53(21): 4791-4794.
[96]Xin Jin; Zhengbiao Ouyang*; Qiong Wang; Mi Lin; Guohua Wen; Jingjing Wang.Highly Compact Circulators in Square-Lattice Photonic Crystal Waveguides.PLoS One, 2014, 9(11): e113508.
[97]Huang, Tianze; Sun, Yiling*; Ouyang, Zhengbiao.Numerical analysis of dual-wavelength nonreciprocal phase shifter for magneto-optical isolators on silicon-on-insulator system.Optical Engineering, 2014, 53(11).
[98]Wang, Yong; Zhang, Dengguo*; Ouyang, Zhengbiao; Li, Jingzhen.Four-port cross-shaped circulator based on two-dimensional magneto-photonic crystals.Acta Optica Sinica, 2014, 34(10).
[99]Ouyang, Zhengbiao; Zhang, Shi-Chang*.Focusing peculiarities of ion-channel guiding on a relativistic electron beam in a free-electron laser with a three-dimensional wiggler.Laser Physics, 2014, 24(10): 105002.
[100]Asadi, Reza; Ouyang, Zhengbiao*; Yu, Quanqiang; Ruan, Shuangchen.All-optical sensitive phase shifting based on nonlinear out-of-plane coupling through 1-D slab photonic crystal with a layer of graphene.Optics Express, 2014, 22(12): 14840-14849.
[101]Guoliang Zheng; Zhengbiao Ouyang; Shixiang Xu.Mutual action of optical activity effect and linear electro-optic effect in periodically poled “gyroelectric” crystal.Optics Communications, 2014, 316: 217-219.
[102]Wang, Yong; Zhang, Deng-Guo*; Ouyang, Zheng-Biao; Li, Jing-Zhen.Three-port Y-junction optical circulator using a ferrite cylinder in two-dimensional magneto-photonic crystals.Acta Photonica Sinica, 2014, 43(6).
[103]Wang, Bing*; Jin, Xin; Wu, Huanyu; Zheng, Zhaoqiang; Ouyang, Zhengbiao.3D resonator based on luminescence enhanced by both polarized, size-dependent whispering gallery modes and Fabry-Perot waveguide modes in individual ZnO micro- and nanonails.Nanoscale, 2014, 6(10): 5338-5342
[104]Sesay, Maurice; Jin, Xin; Ouyang, Zhengbiao*.Frequency selective surface with arbitrary shapes and its application to filter design.Progress in Electromagnetics Research B, 2014, 58(57): 75-85.
[105]Jin, Xin; Sesay, Maurice; Ouyang, Zhengbiao*; Liu, Qiang; Lin, Mi; Tao, Keyu; Zhang, Dengguo.Photonic-crystal structures with polarized-wave-guiding property and their applications in the mid and far infrared wave bands.Optics Express, 2013, 21(21): 25592-25606.
[106]Kaijage, Shubi Felix*; Ouyang, Zhengbiao*; Jin, Xin.Porous-Core Photonic Crystal Fiber for Low Loss Terahertz Wave Guiding.Ieee Photonics Technology Letters, 2013, 25(15): 1454-1457.
[107]Liu, Qiang1; Ouyang, Zhengbiao2; Albin, Sacharia1, 3*.Designs of photonic crystal nanocavities for stimulated Raman scattering in diamond.Applied Physics B: Lasers and Optics , 2013, 2014(1-2).
[108]Zheng, Yaoxian1, 2; Yu, Quanqiang1, 2; Tao, Keyu1, 2*; Ouyang, Zhengbiao1, 2*.All-optical tunable filters based on optomechanical effects in two-dimensional photonic crystal cavities.Optics Letters, 2013, 38(21): 4362-4365.
[109]Liu, Qiang; Ouyang, Zhengbiao; Albin, Sacharia*.Photonic crystal nano-cavities for enhancing zero-phonon line emission from nitrogen-vacancy centers in diamond.Optics and Laser Technology, 2013, 48: 128-134.
[110]Sesay, Maurice; Jin, Xin; Ouyang, Zhengbiao*.Design of polarization beam splitter based on coupled rods in a square-lattice photonic crystal.Journal of the Optical Society of America B-Optical Physics, 2013, 30(8): 2043-2047.
[111]Wang, B.*; Jin, X.; Ouyang, Z. B.Synthesis, characterization and cathodoluminescence of self-assembled 1D ZnO/In2O3 nano-heterostructures.CrystEngComm, 2012, 14(20): 6888-6903.
[112]Qiong Wang; Zhengbiao Ouyang*; Keyu Tao; Mi Lin; Shuangchen Ruan.T-shaped optical circulator based on coupled magneto–optical rods and a side-coupled cavity in a square-lattice photonic crystal.Physics Letters A, 2012, 376(4): 646-649.
[113]Zheng, Guoliang1, 2*; Xu, Shixiang1, 2; Ouyang, Zhengbiao1, 2.Athermal design for Solc-type filter based on PPKTP.Chinese Optics Letters, 2012, 10(SUPPL.2).
[114]Wu, Chih Jung; Liu, Chung Ping; Ouyang, Zhengbiao*.Compact and low-power optical logic NOT gate based on photonic crystal waveguides without optical amplifiers and nonlinear materials.Applied Optics, 2012, 51(5): 680-685.
[115]Wang, B.*; Jin, X.; Ouyang, Z. B.; Xu, P.Photoluminescence and field emission of 1D ZnO nanorods fabricated by thermal evaporation.Applied Physics A-Materials Science & Processing, 2012, 108(1): 195-200.
[116]Wang, B.*; Jin, X.; Ouyang, Z. B.; Xu, P.Field emission properties originated from 2D electronics gas successively tunneling for 1D heterostructures of ZnO nanobelts decorated with In 2O3 nanoteeth.Journal of Nanoparticle Research, 2012, 14(8): 1008.
[117]Wang, Qiong; Ouyang, Zhengbiao*; Liu, Qiang.Multiport photonic crystal circulators created by cascading magneto-optical cavities.Journal of the Optical Society of America B-Optical Physics, 2011, 28(4): 703-708.
[118]Liu, Qiang*; Ouyang, Zhengbiao; Albin, Sacharia.Coupled photonic crystal micro-cavities with ultra-low threshold power for stimulated Raman scattering.Optics Express, 2011, 19(5): 4795-4804.
[119]Ouyang, Zhengbiao*; 曹恩文; 李成寬.A dual-frequency orthogonal-bi-polarization laser cavity based on a photonic crystal.Journal of Shenzhen University Science and Engineering, 2011, 28(4): 302-310.
[120]Tao, K.; Qiu, G.; Zheng, G.; Liu, Q.; Li, L.; Ouyang, Z.*.Terahertz subwavelength filters based on a 2D lattice of metal wires.Applied Physics B: Lasers and Optics , 2010, 101(1-2): 305-310.
[121]Fang, Yun-Tuan*; Ouyang, Zheng-Biao.Transmission spectrum and potential applications of periodic structure composed of single-negative material and anisotropic material.Optics and Lasers in Engineering, 2010, 48(10): 1034-1037.
[122]Fang, Y. -T.*; Ouyang, Z. -B.; Qiu, G. Ultra-compact spatial filtering with both wide spatial-frequency bandwidth and high transmittance using single-negative material.The European Physical Journal - Applied Physics, 2010, 51(1): 10701.
[123]Lin, M.; Xu, J.; Fang, Y.; Qiu, G.; Ouyang, Z.*.Polarization- and direction-independent defect modes in a wide incident-angle range within Bragg gaps by photonic heterostructures containing negative-index materials.Applied Physics B: Lasers and Optics , 2010, 98(4): 803-807.
[124]Zheng, Guoliang*; Ouyang, Zhengbiao; Xu, Shixiang.A high-speed widely tunable Solc-type flat-top filter based on the dual transverse Pockels effect.Journal of Optics, 2010, 12(3): 035213.
[125]Fang, Yun-Tuan*; Ouyang, Zheng-Biao.POWER-LOSSLESS CHANNEL SWITCH BASED ON LATTICE SOLITONS.Modern Physics Letters B, 2010, 24(3): 297-304.
[126]Zheng, G.*; She, W.; Ouyang, Z.Quasi-phase-matched optical activity effect in "gyroelectric" crystals and its applications.Applied Physics B: Lasers and Optics , 2010, 98(1): 107-111.
[127]Fang, Yun-Tuan*; Ouyang, Zheng-Biao.An approximately omnidirectional defect mode of the TE wave from one-dimensional photonic crystals doped by negative-index materials.Journal of Optics A: Pure and Applied Optics , 2009, 11(4): 045103.
[128]Lin, Mi; Ouyang, Zhengbiao*; Xu, Jun; Qiu, Gaoxin.Omnidirectional and multi-channel filtering by photonic quantum wells with negative-index materials.Optics Express, 2009, 17(7): 5861-5866.
[129]Liu, Qiang; Ouyang, Zhengbiao*; Wu, Chih Jung; Liu, Chung Ping; Wang, Jong C.All-optical half adder based on cross structures in two-dimensional photonic crystals.Optics Express, 2008, 16(23): 18992-19000.
[130]Ouyang, Zhengbiao*; Mao, Depeng; Liu, Chung Ping; Wang, Jong C.Photonic structures based on dielectric and magnetic one-dimensional photonic crystals for wide omnidirectional total reflection.Journal of the Optical Society of America B-Optical Physics, 2008, 25(3): 297-301.
[131]Mao, Depeng; Ouyang, Zhengbiao*; Wang, Jong C.; Liu, Chung Ping.Single-TM-mode Bragg fibers made of magnetic materials.Optics Express, 2008, 16(2): 628-635.
[132]Fang, Yuntuan*; Ouyang, Zhengbiao.Realization of absolute negative refraction index by a photonic crystal using anisotropic dielectric material.Chinese Optics Letters, 2008, 6(1): 57-60.
[133]Ouyang, Zheng-Biao*; Zhang, Shi-Chang.Mode competition in a large-orbit coaxial-waveguide cyclotron autoresonance maser (CARM) amplifier.Journal of Physics D: Applied Physics , 2008, 41(1): 015501.
[134]Mao, D.; Ouyang, Z.*; Wang, J.C.; Liu, C.P.; Wu, C.J..A photonic-crystal polarizer integrated with the functions of narrow bandpass and narrow transmission-angle filtering.Applied Physics B: Lasers and Optics , 2008, 90(1): 127-131.
[135]Wang, Hong*; Ouyang, Zheng-Biao; Han, Yan-Ling; Zhong, Yuan-Cong; Ruan, Shuang-Chen.Influence of spatial profile on lasing threshold of defect modes in a one-dimensional photonic crystal laser.Acta Photonica Sinica, 2008, 37(1): 95-100.
[136]Ouyang, Zhengbiao; Zhanga, Shi-Chang.Nonlinear analysis of a large-orbit coaxial-waveguide cyclotron autoresonance maser amplifier.Journal of Applied Physics, 2007, 102(7): 074516.
[137]Wang, Hong; Ouyang, Zhengbiao; Han, Yanling; Meng, Qingsheng; 羅賢達; 劉勁松.Effect of the strength of randomness on lasing threshold in one-dimensional partially random media.Acta Physica Sinica, 2007, 56(5): 2616-2622.
[138]Wang, Hong*; Ouyang, Zhengbiao; Han, Yanling; Meng, Qingsheng.FDTD model of photonic crystal laser with four-energy-level gain media.Chinese Journal of Computational Physics, 2007, 24(4): 452-456.
[139]Qiu, CR; Ouyang, ZB; Zhang, SC; Zhang, HB; Jin, JB; Lai, YX.Nonlinear theory of a cyclotron autoresonance maser (CARM) amplifier with outer-slotted-coaxial waveguide.Journal of Physics D: Applied Physics , 2005, 38(10): 1571-1576.
[140]Qiu, Chun-Rong*; Ouyang, Zheng-Biao; Zhang, Shi-Chang; Zhang, Hui-Bo; Jin, Jian-Bo.Self-consistent nonlinear investigation of an outer-slotted-coaxial waveguide gyroton traveling-wave amplifier.IEEE Transactions on Plasma Science, 2005, 33(3): 1013-1018.
[141]Zhang, SC; Ouyang, ZB; Qiu, CR; Zhang, HB; Jin, HB.Coaxial-waveguide gyrotron amplifier operating with high power and ultrahigh gain in millimeter and submillimeter waves.IEEE Transactions on Plasma Science, 2004, 32(3): 981-986.
[142]Zhang, Deng-Guo*; Liang, Xiao-Zhu; Ouyang, Zheng-Biao; Xu, Gui-Wen.Electromagnetic field analysis and numerical calculation of reflection-mode one-dimensional magneto-photonic crystal.Journal of Optoelectronics - Laser, 2004, 15(SUPPL.): 161-162.
[143]Ouyang, ZB; Zhang, SC; Jin, JB; Qui, CR; Zhang, HB; Hu, L; Liang, XP.Nonlinear analysis of relativistic motion of electrons in self-amplified spontaneous emission free-electron laser in ultraviolet and X-ray spectral regions.International Journal of Infrared and Millimeter Waves, 2003, 24(4): 585-591.
[144]Ouyang, ZB; Zhang, SC*.A far-infrared free-electron maser oscillator operating at the third cyclotron harmonic.Journal of Physics B: Atomic, Molecular and Optical Physics , 2003, 36(1): 129-137.
[145]Jin, JB; Ouyang, ZB; Qiu, CR; Liang, XP; Zhang, HB; Hu, L; Zhang, SC.Efficiency enhancement of coaxial-cavity electron cyclotron resonance maser by tapering guide magnetic field.International Journal of Infrared and Millimeter Waves, 2003, 24(1): 35-41.
[146]Ouyang, Z; Jin, C; Zhang, DZ; Cheng, BY; Meng, XD; Yang, GZ; Li, JZ.Photonic bandgaps in two-dimensional short-range periodic structures.Journal of Optics A: Pure and Applied Optics , 2002, 4(1): 23-28.
[147]Khan, Karim*; Tareen, Ayesha Khan; Wang, Lude; Aslam, Muhammad; Ma, Chunyang; Mahmood, Nasir; Ouyang, Zhengbiao; Zhang, Han*; Guo, Zhongyi*.Sensing Applications of Atomically Thin Group IV Carbon Siblings Xenes: Progress, Challenges, and Prospects.Advanced Functional Materials, 2005957.
[148]Abood, Israa; Elshahat, Sayed; Ouyang, Zhengbiao*.High buffering capability of silicon-polymer photonic-crystal coupled cavity waveguide.Waves in Random and Complex Media.
[149]Shubi F. Kaijage*; Zhengbiao Ouyang*; Xin Jin.Low-loss Terahertz Octagonal Photonic Crystal Fibers and Their Comparison with Hexagonal Ones.Journal of Lightwave Technology.
發(fā)表期刊論文:
[1]王瓊, 歐陽征標, 劉強. 《信號與系統(tǒng)》課程中以實用設(shè)計為導(dǎo)向的實驗教學探討[J]. 信息系統(tǒng)工程, 2019, (12): 168-170.
[2]劉強, 王瓊, 歐陽征標. 基于混合微腔的高效率太赫茲波產(chǎn)生[J]. 深圳大學學報(理工版), 2019, 36 (02): 140-146.
[3]羅韓君, 歐陽征標, 劉強, 盧振利, 盧華蘭. 大氣湍流對蓋革光子探測測距精度影響的研究[J]. 激光與紅外, 2018, 48 (05): 605-610.
[4]林密, 邱文標, 郗翔, 歐陽征標. 基于二維光子晶體的偏振選擇TE/TM波功率分配器[J]. 光學學報, 2016, 36 (12): 259-265.
[5]傅濤, 歐陽征標. 等離子體填充金屬光子晶體Cherenkov輻射源模擬研究[J]. 物理學報, 2016, 65 (07): 191-197.
[6]傅濤, 楊梓強, 歐陽征標*. 等離子體填充金屬光子晶體慢波結(jié)構(gòu)色散特性研究[J]. 物理學報, 2015, 64 (17): 142-148.
[7]王晶晶, 歐陽征標*, 文國華, 黃浩, 林密, 王瓊. 圓環(huán)桿與平板連桿的適合光路集成的二維正方晶格光子晶體(英文)[J]. 光子學報, 2015, 44 (04): 88-92.
[8]王勇, 張登國, 歐陽征標, 李景鎮(zhèn). 四端口十字型二維磁性光子晶體環(huán)行器[J]. 光學學報, 2014, 34 (10): 265-269.
[9]王勇, 張登國, 歐陽征標, 李景鎮(zhèn). 基于二維磁性光子晶體的三端口Y形鐵氧體柱環(huán)行器[J]. 光子學報, 2014, 43 (06): 89-92.
[10]鄭國梁*; 徐世祥; 歐陽征標; 賀威.角度不敏感Solc型電光濾波器設(shè)計.光學學報, 2014, 34(s1): s119002.
[11]祁春超, 歐陽征標*. 基于600—2000nm抽運源的太赫茲相干光源的最新進展[J]. 物理學報, 2011, 60 (09): 873-881.
[12]歐陽征標, 曹恩文, 李成寬. 基于光子晶體的偏振正交雙色激光器諧振腔(英文)[J]. 深圳大學學報(理工版), 2011, 28 (04): 302-310.
[13]艾月霞; 歐陽征標; 徐平.加強校企合作 夯實教學質(zhì)量——深圳大學電子學院探索專業(yè)實習新路子.中國科教創(chuàng)新導(dǎo)刊, 2010, (16): 166+168.
[14]鄭國梁, 歐陽征標, 徐世祥. 偏振態(tài)對準相位匹配線性電光效應(yīng)的影響[J]. 應(yīng)用光學, 2010, 31 (04): 666-671.
[15]鄭國梁, 歐陽征標*, 徐世祥. 吸收對準相位匹配線性電光效應(yīng)的影響(英文)[J]. 深圳大學學報(理工版), 2010, 27 (02): 152-156.
[16]鄭國梁, 歐陽征標. 溫度不敏感偏振無關(guān)電光調(diào)制器設(shè)計[J]. 應(yīng)用光學, 2009, 30 (06): 911-915.
[17]歐陽征標, 艾月霞, 杜戈果, 龔向東, 杜晨林, 張登國. 高等教育動態(tài)教學質(zhì)量控制系統(tǒng)探索[J]. 電氣電子教學學報, 2009, 31 (S1): 129-131.
[18]林密, 歐陽征標*, 徐軍. 含負磁導(dǎo)率或雙負材料的一維光子晶體的全方位帶隙中波的反射相位特性[J]. 光子學報, 2009, 38 (08): 1946-1952.
[19]艾月霞, 歐陽征標. 建立本科教育質(zhì)量保障體系的研究與實踐[J]. 科技創(chuàng)新導(dǎo)報, 2009, (15): 161.
[20]鐘遠聰, 歐陽征標, 王宏, 王仲淳, 劉宗平, 吳志榮. 1維光子晶體微腔的光子局域特性分析[J]. 激光技術(shù), 2009, 33 (02): 127-129+133.
[21]王宏, 歐陽征標, 韓艷玲, 鐘遠聰, 阮雙琛. 一維光子晶體激光器中模場的空間分布及其對閾值的影響[J]. 光子學報, 2008, (01): 95-100.
[22]周慧, 張登國, 歐陽征標, 李景鎮(zhèn). 應(yīng)用于光隔離器的一維磁光光子晶體結(jié)構(gòu)探索[J]. 光子學報, 2008, (01): 106-109.
[23]鐘遠聰; 歐陽征標; 劉強.石墨結(jié)構(gòu)光子晶體缺陷形態(tài)對品質(zhì)因子的影響.光子學報, 2008, 37(s2): 60-62.
[24]劉強; 歐陽征標*.基于二維光子晶體“十字”結(jié)構(gòu)的半加器.光子學報, 2008, 37(s2): 46-50.
[25]艾月霞; 歐陽征標.構(gòu)建高效教學質(zhì)量監(jiān)控體系探討.中國科教創(chuàng)新導(dǎo)刊, 2007, (20).
[26]歐陽征標. 數(shù)字電路教材改革——兼談高等學校教材改革思路[J]. 電氣電子教學學報, 2007, (S1): 45-47.
[27]王宏, 歐陽征標, 韓艷玲, 孟慶生. 四能級增益介質(zhì)光子晶體激光器的時域有限差分模型與模擬[J]. 計算物理, 2007, (04): 452-456.
[28]孟慶生, 歐陽征標, 王仲淳, 吳志榮, 劉宗平, 羅賢達, 王宏. 一維光子晶體諧振腔的模式類型及其性質(zhì)[J]. 光學學報, 2007, (07): 1290-1294.
[29]王宏, 歐陽征標, 韓艷玲, 鐘遠聰, 阮雙琛. 二維隨機增益介質(zhì)中局域模的模面積和放大[J]. 光學學報, 2007, (07): 1295-1300.
[30]王宏, 歐陽征標, 韓艷玲, 阮雙琛. 含色散介質(zhì)的一維光子晶體微腔的光學特性和模式調(diào)節(jié)[J]. 光學學報, 2007, (05): 940-945.
[31]王宏, 歐陽征標, 韓艷玲, 孟慶生, 羅賢達, 劉勁松. 隨機性對部分隨機介質(zhì)激光器閾值的影響[J]. 物理學報, 2007, (05): 2616-2622.
[32]許桂雯, 歐陽征標. 一種新型光子晶體雙色諧振腔[J]. 光子學報, 2007, (03): 429-433.
[33]王宏, 歐陽征標, 韓艷玲, 孟慶生, 阮雙琛. 一維光子晶體帶邊激光器的閾值特性分析[J]. 光學學報, 2006, (12): 1813-1818.
[34]王宏, 歐陽征標, 韓艷玲, 孟慶生, 簡耀波, 羅賢達. 一維光子晶體缺陷模激光器的放大特性[J]. 光學學報, 2006, (11): 1691-1697.
[35]歐陽征標, 孟慶生, 許桂雯, 呂雅利, 孫一翎, 張登國, 阮雙琛, 李景鎮(zhèn). 一種復(fù)合型光子晶體微諧振腔[J]. 深圳特區(qū)科技, 2005, (00): 46-50.
[36]歐陽征標,許桂雯,孫一翎,張登國,阮雙琛,李景鎮(zhèn). 光子晶體微諧振腔的調(diào)諧特性[J]. 光電子·激光, 2005, (04): 399-401+408.
[37]歐陽征標,楊琳玲,許桂雯,阮雙琛,李景鎮(zhèn). 一維缺陷光子晶體的模式特性研究[J]. 光電子·激光, 2005, (01): 63-66.
[38]許桂雯,歐陽征標. 三種缺陷態(tài)光子晶體的比較研究[J]. 深圳大學學報, 2004, (04): 350-355.
[39]張登國,倪娜,安鶴南,歐陽征標,許桂雯. 一維磁性光子晶體的電磁場分析和數(shù)值計算[J]. 光子學報, 2004, (08): 1007-1010.
[40]安鶴男,歐陽征標,李興敏. 在遠程教育中應(yīng)用DCOM技術(shù)實現(xiàn)組件化的網(wǎng)絡(luò)虛擬實驗室[J]. 內(nèi)蒙古民族大學學報(自然科學版), 2004, (04): 376-378.
[41]安鶴男,歐陽征標,劉春平. 多媒體CAI課件中演播控件的實現(xiàn)技術(shù)[J]. 教育信息化, 2004, (08): 47-48.
[42]安鶴男,歐陽征標,許桂雯,孫一翎,阮雙琛,李景鎮(zhèn),張道中. 二維光子晶體結(jié)構(gòu)參量對光子禁帶特性的影響[J]. 光學學報, 2004, (06): 842-846.
[43]安鶴男,歐陽征標,劉春平. Internet與家庭網(wǎng)絡(luò)互連的三層Web網(wǎng)關(guān)結(jié)構(gòu)研究[J]. 電腦與電信, 2004, (Z2): 88-89.
[44]安鶴男,歐陽征標,劉春平. 利用COM組件技術(shù)開發(fā)Web應(yīng)用系統(tǒng)[J]. 電腦與電信, 2004, (04): 96-97.
[45]歐陽征標,安鶴男,阮雙琛,李景鎮(zhèn),張道中. 利用二維光子晶體提高波的耦合效率(英文)[J]. 光子學報, 2004, (01): 69-72.
[46]許桂雯,歐陽征標,安鶴男,孫一翎,曹建章,張登國,阮雙琛,李景鎮(zhèn). 光子晶體缺陷模的帶寬與品質(zhì)因子研究[J]. 光子學報, 2003, (09): 1079-1082.
[47]黃韓娟,歐陽征標,許桂雯,安鶴男,阮雙琛,李景鎮(zhèn). 復(fù)周期光子晶體的理想多通道濾波特性[J]. 光電子·激光, 2003, (01): 50-53.
[48]歐陽征標,李景鎮(zhèn),朱駿,張登國,孫一翎. 一種高效率光子晶體發(fā)光二極管[J]. 發(fā)光學報, 2002, (05): 473-476.
[49]歐陽征標,李景鎮(zhèn),張道中. 一維和二維系統(tǒng)中電子禁帶與光子禁帶的數(shù)學等價特性(英文)[J]. 光子學報, 2002, (07): 802-806.
[50]歐陽征標,朱駿,李景鎮(zhèn). 兩端有慢變結(jié)構(gòu)的光子晶體的能帶特性研究[J]. 光學學報, 2002, (05): 612-615.
[51]歐陽征標,劉海山,李景鎮(zhèn). 光子晶體超窄帶濾波器[J]. 光子學報, 2002, (03): 281-284.
[52]朱駿,歐陽征標,李景鎮(zhèn). 一類慢變周期結(jié)構(gòu)光子晶體的能帶特性研究[J]. 光電子·激光, 2002, (02): 136-138.
[53]符李淵,歐陽征標,李景鎮(zhèn). 復(fù)周期結(jié)構(gòu)光子晶體的光子能帶特性研究[J]. 光電子·激光, 2002, (02): 139-141.
[54]劉海山,歐陽征標,李景鎮(zhèn),王啟明. 用于波分復(fù)用的光子晶體濾波器[J]. 光電子·激光, 2002, (02): 145-149.
[55]歐陽征標,李景鎮(zhèn),張道中,王啟明. 多層光子晶體濾波器研究[J]. 光學學報, 2002, (01): 79-84.
[56]歐陽征標,李景鎮(zhèn). 光子晶體的研究進展[J]. 激光雜志, 2000, (02): 4-6.
[57]歐陽征標,李景鎮(zhèn),孫一翎,林敏. 短波長三維光子晶體(英文)[J]. 光子學報, 2000, (02): 112-116.
[58]歐陽征標. 奧比管的簡化理論[J]. 深圳大學學報, 1992, (Z2): 9-16.
[59]歐陽征標. 關(guān)于第三宇宙速度的計算[J]. 深圳大學學報, 1992, (Z2): 94-96.
[60]于善夫,劉盛綱,徐曉曦,陳曉東,歐陽征標. 靜電電子脈塞的受激輻射的實驗研究[J]. 電子學報, 1992, (03): 77-79+26.
[61]歐陽征標. 負反饋放大電路的方框圖分析法中的基本放大電路的輸入輸出端口的選擇[J]. 深圳大學學報, 1991, (Z2): 50-58.
[62]歐陽征標. 奧比管的輻射機制研究[J]. 深圳大學學報, 1991, (Z1): 13-18.
[63]歐陽征標. 靜電離心系統(tǒng)中電子的非圓軌道運動規(guī)律的數(shù)值研究[J]. 電子科學學刊, 1991, (02): 145-150.
[64]歐陽征標. 考慮空間電荷梯度效應(yīng)的靜電電子回旋諧振脈塞的線性理論[J]. 深圳大學學報, 1990, (Z2): 57-67.
[65]歐陽征標. 正交場擺動器自由電子激光器[J]. 深圳大學學報, 1990, (Z1): 49-53.
[66]歐陽征標. 采用靜電聚束的環(huán)形自由電子激光器[J]. 電子科學學刊, 1989, (05): 528-531.
[67]于善夫,劉紅秀,陳曉東,歐陽征標,劉盛綱. 靜電電子回旋脈塞與靜電自由電子激光[J]. 強激光與粒子束, 1989, (02): 99-117.
[68]歐陽征標. 靜電電子回旋脈塞的單粒子理論[J]. 成都電訊工程學院學報, 1988, (03): 305-311.
[69]劉盛綱 ,張世昌 ,楊中海 ,陳曉東 ,歐陽征標. 靜電電子回旋諧振脈塞的綫性理論[J]. 成都電訊工程學院學報, 1986, (02): 13-24.
會議論文:
[1]An, Yin-bing; Fu, Tao; Ouyang, Zheng-biao*.Fano Resonances from Quadrupole-dipole Split Mode Interference in Photonic Crystal Waveguide-single-cavity Structure.2nd International Conference on Electrical and Electronic Engineering (EEE), 2019-05-26 To 2019-05-27.
[2]Luo, Hanjun; Ouyang, Zhengbiao*; Liu, Qiang; Lu, Zhenli; Li, Bin.Detection Probability Limitation of a Pulsed Gm-APD Laser Ranging System with Turbulence Effects.Conference on LIDAR Imaging Detection and Target Recognition, 2017-07-23 To 2017-07-25.
[3]Bibbò , Luigi; Liu, Qiang; Lin, Mi; Wang, Qiong; Ouyang, Zhengbiao.Tunable perfect absorber for bio-sensin.10th Global Symposium on Millimeter-Waves, GSMM 2017, 2017-05-24 to 2017-05-26.
[4]傅濤, 安銀冰 & 歐陽征標. (2016). 用于Cherenkov振蕩器的光子晶體波導(dǎo)微腔結(jié)構(gòu)研究. (eds.) 第二屆全國太赫茲科學技術(shù)學術(shù)年會論文集 (pp.151-154).
[5]Fu, T.; An, Y.B.; Ouyang, Z.B.A novel Cherenkov oscillator based on microcavity in photonic crystal waveguide.2016 Progress In Electromagnetics Research Symposium, PIERS 2016, 2016-08-08 to 2016-08-11.
[6]Yuan, Yonghua; Ouyang, Zhengbiao*.All-optical switch based on nonlinear photonic crystals ring resonator.4th International Conference on Sensors, Mechatronics and Automation (ICSMA), 2016 to 2016-11-13.
[7]Chen, Zhiliang*; Ouyang, Zhengbiao; Liu, Qiang; Zheng, Yaoxian.An ultra-high sensitivity temperature sensor based on surface-plasmon polariton in metal-insulator-metal waveguide and a dynamic cavity.4th International Conference on Advanced Materials and Information Technology Processing (AMITP), 2016 to 2016-09-25.
[8]Fu, T.; An, Y.B.; Ouyang, Z.B. A novel Cherenkov oscillator based on microcavity in photonic crystal waveguide.2016-08-08 to 2016-08-11.
[9]Yogesh, N.; Yu, Quanqiang; Ouyang, Zhengbiao*.THz twist polarizer based on supramolecular fermat's spiral chiral metamaterial.PIERS 2015 PRAGUE, Czech Republic, 2015-07-06 to 2015-07-09.
[10]Yogesh, N.; Yu, Quanqiang; Ouyang, Zhengbiao*.Demonstration of multi-beam microwave heating based on the wave confinement of hexagonal photonic crystal multilayered cavity.PIERS 2015 PRAGUE, Czech Republic, 2015-07-06 to 2015-07-09.
[11]Zhang, Dengguo; Wang, Yong; Huang, Tan; Ouyang, Zhengbiao.Low-loss Y-junction two-dimensional magneto-photonic crystals circulator using a ferrite cylinder.IEEE MTT-S International Microwave Workshop Series on Advanced Materials and Processes for RF and THz Applications, IEEE MTT-S IMWS-AMP 2015, 2015-07-01 to 2015-07-03.
[12]Zhang, Dengguo; Wang, Yong; Huang, Tan; Ouyang, Zhengbiao.Low-loss Y-junction two-dimensional magneto-photonic crystals circulator using a ferrite cylinder.2015-07-01 to 2015-07-03.
[13]Guohua Wen; Mi Lin; Yogesh Natesan; Zhengbiao Ouyang*.TE-optical switch based on modification of photonic bandgaps in photonic crystals.2014 IEEE Workshop on Advanced Research and Technology in Industry Applications (WARTIA), Canada, 2014-09-29 to 2014-09-30.
[14]Guohua Wen; Zhengbiao Ouyang*.A two-dimensional square-lattice photonic crystal with rotated square cylinders and cross thin plates exhibiting wide photonic bandgap.CA3M2014: Optical and Magnetic Materials, Semiconductors and Technology , China,Guangdong,Shenzhen, 2014-08-23 to 2014-08-24.
[15]Jingjing Wang; Zhengbiao Ouyang*; Guohua Wen; Hao Huang; Mi Lin; Qiong Wang.Wide absolute-photonic-bandgap 2D square-lattice photonic crystal based on hollow cylinders and cross connecting plates.ICA3M2014: Optical and Magnetic Materials, Semiconductors and Technology , China,Guangdong,Shenzhen, 2014-08-23 to 2014-08-24.
[16]Wen, Guohua; Lin, Mi; Yogesh, Natesan; Ouyang, Zhengbiao*.TM-optical switch based on modification of photonic band gaps in photonic crystals.2014-09-29 to 2014-09-30.
[17]Liu, Qiang; Ouyang, Zhengbiao; Albin, Sacharia.A new method to improve the sensitivity of THz sensor based on combined photonic crystal microcavities.Optical Sensors, Sensors 2013, Puerto Rico, 2013-07-14 to 2013-07-17.
[18]張登國, 王一鵬, 歐陽征標, 李景鎮(zhèn) & 林密. (2013). 二維磁性光子晶體光環(huán)行器分析. (eds.) 2013年全國微波毫米波會議論文集 (pp.118-121).
[19]Qi, Chunchao1, 2, 3*; Ouyang, Zhengbiao1, 2, 3.A controlled frequency-shifted feedback loop for generation of widely tunable coherent Terahertz waves.Laser and Tera-Hertz Science and Technology, LTST 2012, China, 2012-11-01 to 2012-11-02.
[20]Sesay, Maurice1; Xin, Jin1; Ouyang, Zhengbiao1.Polarization beam splitter based on internal coupled rods in a square-lattice photonic crystal.Information Optoelectronics, Nanofabrication and Testing, IONT 2012, China, 2012-11-01 to 2012-11-02.
[21]Kaijage, Shubi F.1; Ouyang, Zhengbiao1.Low-loss photonic crystal fiber for transmission of terahertz waves.Laser and Tera-Hertz Science and Technology, LTST 2012, China, 2012-11-01 to 2012-11-02.
[22]Zhang, Deng-Guo1*; Wang, Yi-Peng1; Ouyang, Zheng-Biao1; Lin, Mi1.On the analysis of two-dimensional magnetic-photonic crystal circulator in microwave band.2012 International Conference on Microwave and Millimeter Wave Technology, ICMMT 2012, 2012-05-05 to 2012-05-08.
[23]Tao, K.; Qiu, G.; Chen, H.; Zhai, J.; Li, L.; Ouyang, Z.*.A new kind of unidirectional waveguides.2011 2nd International Conference on Mechanic Automation and Control Engineering, MACE 2011, China, 2011-07-15 to 2011-07-17.
[24]Wang, Qiong*; Yu, Quanqiang; Ouyang, Zhengbiao; Zhang, Lingling; Cui, Yiping.Highly directional emission from multi-channel photonic crystal via beam splitting.2011 International Conference on Information and Automation, ICIA 2011, China, 2011-06-06 to 2011-06-08.
[25]歐陽征標, 張式淵 & 許桂雯. (2011). 基于光子晶體非線性諧振腔的光學邏輯非門研究. (eds.) 中國光學學會2011年學術(shù)大會摘要集 (pp.625).
[26]鄭國梁, 歐陽征標 & 徐世祥. (2011). 溫度不敏感Solc型電光濾波器. (eds.) 中國光學學會2011年學術(shù)大會摘要集 (pp.495).
[27]Chih Jung Wu; Qiang Liu; Chung Ping Liu; Jong C. Wang; Zhengbiao Ouyang*.A Combined Cavity with Improved Performance under Simultaneous Resonance of Sub-cavities.Progress in Electromagnetics Research Symposium (PIERS 2010, xI'AN CHINA), Proceedings of PIERS 2010 in Xi'an [PIERS Online, 6(5): 406-410, 2010] , China, 2010-03-22 to 2010-03-26.
[28]Keyu Tao; Gaoxin Qiu; Guoliang Zheng; Qiang Liu; Ling Li; Zhengbiao Ouyang*.Terahertz subwavelength filter based on a 2D lattice of metal wires.International Conf. on Light Localization and Photonic Band Gaps, China, 2010-01-03 to 2010-01-06.
[29]林密; 歐陽征標*; 徐軍.單負材料一維光子晶體的反射相位特性, 交流報告, 廣東省光學學會-2009年學術(shù)交流大會 ,2009.12.18-20,東莞市.廣東省光學學會-2009年學術(shù)交流大會, 中國,廣東省,東莞市, 2009-12-18至2009-12-20.
[30]曹恩文; 歐陽征標*; 李成寬.光子晶體雙頻正交偏振激光器諧振腔, 交流報告, 廣東省光學學會-2009年學術(shù)交流大會,2009.12.18-20,東莞市.廣東省光學學會-2009年學術(shù)交流大會, 中國,廣東省,東莞市, 2009-12-18至2009-12-20.
[31]曹恩文; 歐陽征標*; 余銓強.光子晶體多通道窄帶濾波器通道間隔的均勻化.廣東省光學學會-2009年學術(shù)交流大會, 中國,廣東省,東莞市, 2009-12-18至2009-12-20.
[32]Zhengbiao Ouyang*; Qiang Liu; Guiwen Xu; Qiong Wang; Kefeng Liu; Qizhi Xie.Recent Researches on Photonic Logic Elements and Circuits Based on Photonic Crystals in Shenzhen University.廣東省光學學會-2009年學術(shù)交流大會, China,Guangdong,Dongguan, 2009-12-18 to 2009-12-20.
[33]Zhengbiao Ouyang*; Qiang Liu; Guiwen Xu; Qiong Wang; Kefeng Liu; Qizhi Xie.Photonic Logic Elements and Circuits Based on Photonic Crystals.SICAST2009(2009 Shenzhen International Conf. of Advanced Sci. & Technol.: Application of Tera-Herthz Sci. & Technol.) , China,Guangdong,Shenzhen, 2009-11-15 to 2009-11-20.
[34]Yi, Peng Wang; Deng, Guo Zhang; Zhou, Hui; Zheng, Biao Ouyang.Error analysis of one-dimensional magneto-photonic crystals used as Faraday rotators.2009 Symposium on Photonics and Optoelectronics, SOPO 2009, China, 2009-08-14 to 2009-08-16
[35]Mao, Depeng; Ouyang, Zhengbiao; Zhong, Yuancong.Realization of super narrow pass-band and super narrow transmission-angle filters with one-dimensional defective photonic crystal hetero-structures - art. no. 68311D.2nd Conference on Nanophotonics, Nanostructure and Nanometrology, 2007-11-12 to 2007-11-14.
[36]Depeng, Mao*; Zhengbiao, Ouyang; Yuancong, Zhong.Realization of super narrow pass-band and super narrow transmission-angle filters with one-dimensional defective photonic crystal hetero-structures.Nanophotonics, Nanostructure, and Nanometrology II, 2007-11-12 to 2007-11-14.
[37]Ouyang, Zhengbiao*; Luo, Xi; a; Wang, Jong C.; Liu, Chung Ping; Wu, Chih Jung. A combined cavity for high sensitivity THz signal detection.Terahertz Photonics, China, 2007-11-12 to 2007-11-14.
[38]Han, Yanling*; Wang, Hong; Ouyang, Zheng Biao.Threshold behavior of defect modes in one-dimensional active photonic crystal.Nanophotonics, Nanostructure, and Nanometrology II, 2007-11-12 to 2007-11-14.
[39]Han, Yanling*; Wang, Hong; Ouyang, Zheng Biao.Dispersion-induced localized modes in weakly random media.Nanophotonics, Nanostructure, and Nanometrology II, 2007-11-12 to 2007-11-14.
[40]許桂雯 & 歐陽征標. (2007). 保持光子禁帶不分裂的膜層允許缺陷. (eds.) 2007年中國青年光學學術(shù)研討會論文摘要集 (pp.90-97).
[41]鐘遠聰, 歐陽征標, 王宏, 孟慶生 & 羅賢達. (2007). 一維缺陷光子晶體中光子局域特性分析. (eds.) 2007年中國青年光學學術(shù)研討會論文摘要集 (pp.98-108).
[42]王仲淳, 徐國豪, 歐陽征標 & 吳志榮. (2006). 綠色照明產(chǎn)品(LED)與光子晶體之潛在效益. (eds.) 海峽兩岸第十三屆照明科技與營銷研討會專題報告暨論文集 (pp.216-222).
[43]王宏, 歐陽征標, 韓艷玲, 鐘遠聰 & 阮雙琛. (2006). 一維光子晶體激光器中缺陷模的模面積及其對閾值的影響. (eds.) 中國光學學會2006年學術(shù)大會論文摘要集 (pp.86-87).
[44]歐陽征標, 孟慶生 & 羅賢達. (2006). 一維缺陷態(tài)光子晶體缺陷模的模式規(guī)律. (eds.) 中國光學學會2006年學術(shù)大會論文摘要集 (pp.273-274).
[45]鐘遠聰, 王宏, 歐陽征標, 孟慶生, 羅賢達 & 毛德鵬. (2006). 一維光子晶體激光器局域化長度的優(yōu)化. (eds.) 中國光學學會2006年學術(shù)大會論文摘要集 (pp.289).
[46]許桂雯 & 歐陽征標. (2006). 一種可實現(xiàn)正負色散補償?shù)娜毕輵B(tài)光子晶體. (eds.) 中國光學學會2006年學術(shù)大會論文摘要集 (pp.308).
[47]王宏, 歐陽征標, 韓艷玲, 鐘遠聰 & 阮雙琛. (2006). 一維光子晶體激光器中缺陷模的模面積及其對閾值的影響. (eds.) 中國光學學會2006年學術(shù)大會論文摘要集 (pp.325).
[48]歐陽征標, 孟慶生 & 羅賢達. (2006). 矩形柱-多層膜復(fù)合式二維光子晶體微諧振腔. (eds.) 中國光學學會2006年學術(shù)大會論文摘要集 (pp.338).
[49]王宏, 歐陽征標, 韓艷玲, 鐘遠聰 & 阮雙琛. (2006). 一維光子晶體激光器中缺陷模的模面積及其對閾值的影響. (eds.) 中國光學學會2006年學術(shù)大會論文摘要集 (pp.373-374).
[50]Ouyang, Zhengbiao*; Cai, Yanyan; Meng, Qingsheng; Lu, Yali; Sun, Yiling; Zhang, Dengguo; Ruan, Shuangchen; Li, Jingzhen.Huge group-velocity dispersion in a photonic crystal - art. no. 60200U.Conference on Optoelectronic Materials and Devices for Optical Communications, 2005-11-07 to 2005-11-10.
[51]Ouyang, Zhengbiao*; Meng, Qingsheng; Lu, Yali; Sun, Yiling; Zhang, Dengguo; Ruan, Shuangchen; Li, Jingzhen.A kind of planar photonic crystal micro-cavity - art. no. 602030.Conference on Optoelectronic Materials and Devices for Optical Communications, 2005-11-07 to 2005-11-10.
[52]Ouyang, Zhengbiao*; Sun, Yiling; Zhang, Dengguo; Cao, Jianzhang; Ruan, Shuangchen; Li, Jingzhen.A complex photonic crystal cavity with improved properties of optical filtering.Semiconductor and Organic Optoelectronic Materials and Devices, 2004-11-09 to 2004-11-11.
[53]歐陽征標, 安鶴男, 朱駿, 李景鎮(zhèn) & 阮雙琛. (2002). 慢變晶格結(jié)構(gòu)光子晶體的能帶特性研究. (eds.) 2002年中國光學學會年會論文集 (pp.114-116).
[54]李景鎮(zhèn) & 歐陽征標. (2001). 光子晶體研究進展. (eds.) 第九屆全國光學測試學術(shù)討論會論文(摘要集) (pp.31).
[55]歐陽征標, 劉海山 & 李景鎮(zhèn). (2001). 光子晶體超窄帶濾波器. (eds.) 第九屆全國光學測試學術(shù)討論會論文(摘要集) (pp.68).
[56]歐陽征標, 李景鎮(zhèn), 朱駿, 張登國 & 孫一翎. (2001). 高效率光子晶體發(fā)光二極管的研究. (eds.) 第九屆全國發(fā)光學術(shù)會議摘要集 (pp.281).
[57]符李淵, 歐陽征標 & 李景鎮(zhèn). (2001). 復(fù)周期結(jié)構(gòu)光子晶體的光子能帶特性研究. (eds.) Photonic Crystal (Ⅱ)--Proceedings of CCAST (World Laboratory) Workshop (pp.74-79).