基本介紹
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研究領域,教育背景,工作經歷,專利與獎勵,出版信息,科研活動,
研究領域
教育背景
工作經歷
專利與獎勵
[10] 羅海瀚, 劉定權, 蔡清元, 孔園園. 一種以藍寶石為基底的短波紅外帶通濾光片. 中國: CN106324737B, 2018-10-19.
[11] 蔡清元, 馮旗, 劉定權, 劉寶麗, 羅海瀚, 馮鑫, 周靖, 鄭玉祥, 叢蕊, 劉保劍. 一種測量遙感儀器的線偏振靈敏度的裝置及方法. 中國: CN105758625B, 2018-10-19.
[12] 叢蕊, 劉定權, 蔡清元, 陳剛, 周晟, 蔣林. 大口徑寬光譜範圍F-P可調諧濾波器的高精密裝配系統. 中國: CN207965381U, 2018-10-12.
[13] 叢蕊, 劉定權, 蔡清元, 陳剛, 周晟, 蔣林. 一種大口徑寬光譜F-P可調諧濾波器的高精密裝配系統. 中國: CN108388023A, 2018-08-10.
[14] 蔡清元, 馮旗, 劉定權, 劉寶麗, 羅海瀚, 馮鑫, 周靖, 馬小鳳, 孔園園, 王凱旋. 一種偏振方向可控光強不變的線偏振光產生裝置. 中國: CN105785580B, 2018-02-16.
[15] 羅海瀚, 劉定權, 孔園園, 蔡清元. 以CVD金剛石為基底的遠紅外波段光學薄膜濾光片. 中國: CN206411288U, 2017.08.15.
[16] 羅海瀚, 劉定權, 高艷卿, 蔡清元, 孔園園. 一種具有中波紅外截止功能的遠紅外光學薄膜視窗. 中國: CN107153231A, 2017-09-12.
[17] 羅海瀚, 劉定權, 孔園園, 蔡清元. 一種以CVD金剛石為基底的遠紅外波段光學薄膜濾光片. 中國: CN106842401A, 2017-06-13.
[18] 羅海瀚, 劉定權, 蔡清元, 孔園園. 以藍寶石為基底的短波紅外帶通濾光片. 中國: CN206147131U, 2017-05-03.
[19] 羅海瀚, 李耀鵬, 劉定權, 蔡清元, 蔣林. 以藍寶石為基底的亞微米級厚度的光學狹縫. 中國: CN206146527U, 2017-05-03.
[20] 蔡清元, 馮旗, 劉定權, 劉寶麗, 羅海瀚, 馮鑫, 周靖, 鄭玉祥, 叢蕊, 劉保劍. 一種測量遙感儀器的線偏振靈敏度的裝置. 中國: CN205607626U, 2016-09-28.
[21] 蔡清元, 馮旗, 劉定權, 劉寶麗, 羅海瀚, 馮鑫, 周靖, 馬小鳳, 孔園園, 王凱旋. 偏振方向可控光強不變的線偏振光產生裝置. 中國: CN205608316U, 2016-09-28.
[22] 羅海瀚, 劉定權, 蔡清元, 孔園園. 一種以藍寶石為基底的短波紅外帶通濾光片. 中國: CN105785489A, 2016-07-20.
[23] 羅海瀚, 李耀鵬, 劉定權, 蔡清元, 蔣林. 一種以藍寶石為基底的亞微米級厚度的光學狹縫. 中國: CN105758522A, 2016-07-13.
[24] 蔡清元, 劉定權, 鄭玉祥, 周靖, 羅海瀚, 叢蕊, 秦楊, 王曙光, 劉保劍. 一種介質金屬膜堆的低偏振靈敏度分色膜的製作方法. 中國: CN105629355A, 2016-06-01.
[25] 馬小鳳, 劉定權, 王曙光, 蔡清元, 陳剛, 張莉, 朱佳琳. 超窄帶濾光片的透射率光譜測量裝置. 中國: CN204165650U, 2015.02.18.
[26] 馬小鳳, 劉定權, 王曙光, 蔡清元, 陳剛, 張莉, 朱佳琳. 超窄帶濾光片的透射率光譜測量裝置及方法. 中國: CN104180901A, 2014-12-03.
[27] 羅海瀚, 劉定權, 蔡清元, 李耀鵬. 一種以二氧化碲為基底的中短波紅外增透膜. 中國: CN203965648U, 2014-11-26.
[28] 羅海瀚, 劉定權, 蔡清元, 李耀鵬. 二氧化碲基底上的一種中短波紅外增透膜. 中國: CN104035146A, 2014-09-10.
[29] 蔡清元, 劉定權, 羅海瀚, 鄭玉祥, 陳剛, 張冬旭, 胡二濤. 一種基於全內反射偏振位相差測量來監控薄膜生長的方法. 中國: CN103674892A, 2014-03-26.
[30] 蔡清元, 鄭玉祥, 劉定權, 羅海瀚. 一種快速反演薄膜生長厚度的光學監控追跡方法. 中國: CN102980522A, 2013.03.20.
[31] 周明, 劉定權, 蔡清元, 張莉. 用於光譜設備的光束精確校準輔助裝置. 中國: CN203053853U, 2013-07-10.
[32] 周明, 劉定權, 蔡清元, 張莉. 一種用於光譜設備的光束精確校準輔助裝置. 中國: CN103018175A, 2013-04-03.
出版信息
發表論文
[1] Yu, Yu, Zhou, Jing, Cai, Qingyuan, Chu, Zeshi, Deng, Jie, Lu, Wei, Li, Zhifeng, Chen, Xiaoshuang. Dynamically tunable ultra-narrowband perfect absorbers for the visible-to-infrared range based on a microcavity integrated graphene pair. OPTICS LETTERS[J]. 2021, 46(9): 2236-2239, http://dx.doi.org/10.1364/OL.423674.
[2] Gao, LingShan, Cai, QingYuan, Hu, ErTao, Zhou, Jing, Li, YaoPeng, Luo, HaiHan, Liu, BaoJian, Zheng, YuXiang, Liu, DingQuan. Double-sided optical coating of strongly curved glass by atomic layer deposition. OPTICS EXPRESS[J]. 2021, 29(9): 13815-13828, http://dx.doi.org/10.1364/OE.423085.
[3] Wu, Ying, Hu, ErTao, Cai, QingYuan, Wang, Jing, Wang, ZhengYong, Tu, HuaTian, Yu, KeHan, Chen, LiangYao, Wei, Wei. Enhanced thermal stability of the metal/dielectric multilayer solar selective absorber by an atomic-layer-deposited Al2O3 barrier layer. APPLIED SURFACE SCIENCE[J]. 2021, 541: https://www.webofscience.com/wos/woscc/full-record/WOS:000608511700002.
[4] Cong Rui, Zhou Sheng, Chen Gang, Cai QingYuan, Jiang Lin, Liu DingQuan. The effects of reflection phase shift on filtering performance of a tunable Fabry-Perot filter with a small cavity length. JOURNAL OF INFRARED AND MILLIMETER WAVES[J]. 2021, 40(1): 44-49, http://dx.doi.org/10.11972/j.issn.1001-9014.2021.01.008.
[5] 郭尚坤, 鄧傑, 周靖, 張東海, 余宇, 鄧嘉男, 蔡清元, 李志峰, 陸衛, 陳效雙. 基於等離激元納米結構非對稱集成的二維材料自驅動光回響增強的研究進展(特邀). 紅外與雷射工程. 2021, 50(1): 98-106, http://lib.cqvip.com/Qikan/Article/Detail?id=7103966196.
[6] 叢蕊, 周晟, 陳剛, 蔡清元, 蔣林, 劉定權. 反射相移對小腔長可調諧Fabry-Perot濾波器濾波特性的影響. 紅外與毫米波學報. 2021, 40(1): 44-49, http://lib.cqvip.com/Qikan/Article/Detail?id=7103993094.
[7] Guo, Shangkun, Zhang, Donghai, Zhou, Jing, Deng, Jie, Yu, Yu, Deng, Jianan, Cai, Qingyuan, Li, Zhifeng, Lu, Wei, Chen, Xiaoshuang. Enhanced infrared photoresponse induced by symmetry breaking in a hybrid structure of graphene and plasmonic nanocavities. CARBON[J]. 2020, 170: 49-58, http://dx.doi.org/10.1016/j.carbon.2020.08.035.
[8] Wang, ZhengYong, Hu, ErTao, Cai, QingYuan, Wang, Jing, Tu, HuaTian, Yu, KeHan, Chen, LiangYao, Wei, Wei. Accurate Design of Solar Selective Absorber Based on Measured Optical Constants of Nano-thin Cr Film. COATINGS[J]. 2020, 10(10): https://doaj.org/article/a3f7847de44b40429d10532d6f66f034.
[9] Zhang, Donghai, Zhou, Jing, Liu, Changlong, Guo, Shangkun, Deng, Jianan, Cai, Qingyuan, Li, Zhifeng, Zhang, Yafeng, Zhang, Wenqing, Chen, Xiaoshuang. Enhanced polarization sensitivity by plasmonic-cavity in graphene phototransistors. JOURNAL OF APPLIED PHYSICS[J]. 2019, 126(7): [10] 叢蕊, 王義坤, 陳剛, 蔡清元, 周晟, 蔣林, 劉定權, 徐寶楨. Fabry-Perot可調諧濾波器多級透射峰的抑制方法. 光學學報[J]. 2019, 364-371, http://lib.cqvip.com/Qikan/Article/Detail?id=71888866504849574851485252.
[11] 蔡清元, 蔣林, 李耀鵬, 陳剛, 李大琪, 劉定權, 羅海瀚, 張麟. 光學薄膜與系統的偏振控制. 紅外. 2018, 39(12): 1-7, http://lib.cqvip.com/Qikan/Article/Detail?id=7001035809.
[12] Jiang Liyuan, Liu Dingquan, Ma Chong, Cai Qingyuan, Gao Lingshan. Influence of temperature variation on polarization characteristics of silver thin film mirror. CHINESE OPTICS[J]. 2018, 11(4): 604-609, [13] 蔣麗媛, 劉定權, 馬沖, 蔡清元, 高凌山. 溫度變化對金屬Ag膜反射鏡偏振特性的影響研究. 中國光學[J]. 2018, 11(4): 604-609, http://lib.cqvip.com/Qikan/Article/Detail?id=675759606.
[14] Hu, ErTao, Guo, Shuai, Gu, Tong, Zang, KaiYan, Tu, HuaTian, Cai, QingYuan, Yu, KeHan, Wei, Wei, Zheng, YuXiang, Wang, SongYou, Zhang, RongJun, Lee, YoungPak, Chen, LiangYao. High efficient and wide-angle solar absorption with a multilayered metal-dielectric film structure. VACUUM[J]. 2017, 146: 194-199, http://dx.doi.org/10.1016/j.vacuum.2017.09.051.
[15] Hu, ErTao, Liu, XinXing, Cai, QingYuan, Yao, Yuan, Zang, KaiYan, Yu, KeHan, Wei, Wei, Xu, XiangXing, Zheng, YuXiang, Wang, SongYou, Zhang, RongJun, Chen, LiangYao. Tunable optical properties of co-sputtered Ti-SiO2 nanocomposite thin films. OPTICAL MATERIALS EXPRESS[J]. 2017, 7(7): 2387-2395, https://www.webofscience.com/wos/woscc/full-record/WOS:000404735600025.
[16] Hu, ErTao, Cai, QingYuan, Zhang, RongJun, Wei, YanFeng, Zhou, WenChao, Wang, SongYou, Zheng, YuXiang, Wei, Wei, Chen, LiangYao. Effective method to study the thickness-dependent dielectric functions of nanometal thin film. OPTICS LETTERS[J]. 2016, 41(21): 4907-4910, http://ir.ciomp.ac.cn/handle/181722/56965.
[17] Zhao, DongDong, Cai, QingYuan, Zheng, YuXiang, Zhang, JinBo, Yang, ShangDong, Yang, Liao, Liu, ZhunHua, Zhang, RongJun, Wang, SongYou, Chen, LiangYao. Optical constants of e-beam evaporated and annealed Nb2O5 thin films with varying thickness. JOURNAL OF PHYSICS D-APPLIED PHYSICS[J]. 2016, 49(26): https://www.webofscience.com/wos/woscc/full-record/WOS:000380762600022.
[18] Hu, ErTao, Zhang, RongJun, Cai, QingYuan, Wang, ZiYi, Xu, JiPing, Zheng, YuXiang, Wang, SongYou, Wei, YanFeng, Huang, RenZhong, Chen, LiangYao. Study of the thickness effect on the dielectric functions by utilizing a wedge-shaped Ti film sample with continuously varied thickness. APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING[J]. 2015, 120(3): 875-879, https://www.webofscience.com/wos/woscc/full-record/WOS:000359435900011.
[19] Cai, QingYuan, Zheng, YuXiang, Luo, HaiHan, Zhao, DongDong, Ma, XiaoFeng, Liu, DingQuan. An optical monitoring method for depositing dielectric layers of arbitrary thickness using reciprocal of transmittance. OPTICS EXPRESS[J]. 2015, 23(4): 4703-4714, https://www.webofscience.com/wos/woscc/full-record/WOS:000350872700084.
[20] Lin, Wei, Zheng, YuXiang, Zhang, RongJun, Cai, QingYuan, Zhang, DongXu, Yu, Xiang, Wu, KangNing, Chen, LiangYao. Temperature dependent optical properties of Si nanocrystals embedded in SiO2 matrix. APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING[J]. 2014, 114(2): 423-427, https://www.webofscience.com/wos/woscc/full-record/WOS:000330586200020.
[21] 羅海瀚, 蔡清元, 李耀鵬, 劉定權. 不同沉積溫度下非晶矽光學薄膜的光學特性研究. 光學學報[J]. 2014, 34(4): 0431001-1, [22] Cai, QingYuan, Luo, HaiHan, Zheng, YuXiang, Liu, DingQuan. Design of non-polarizing cut-off filters based on dielectric-metal-dielectric stacks. OPTICS EXPRESS[J]. 2013, 21(16): 19163-19172, https://www.webofscience.com/wos/woscc/full-record/WOS:000323049900055.
[23] 羅海瀚, 李耀鵬, 蔡清元, 劉定權. 組合套鍍法製備2.0~2.4 μm波段8通道微型集成濾光片. 中國雷射[J]. 2012, 39(11): 1107001-1,
科研活動
科研項目
(1) 基於全內反射方式的實時橢圓偏振測量技術研究,主持,省級,2013-10--2016-09
參與會議
(1) 基於全內反射的偏振位相差快速測量研究,2013年中國光學學會學術大會,2013-08,蔡清元