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四元异质结构光子晶体的双通道光学滤波特性 被引量:5

Characteristics of dual-channel optical filter in quaternary heterostructure photonic crystal
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摘要 为了设计高品质的光学滤波器,采用传输矩阵法研究四元异质结构光子晶体(ABC)~7D(CBA)~7的双通道光学滤波特性。结果表明,随着A(或C)介质薄膜光学厚度D_A(或D_C)的增大,滤波器短波通道的滤波品质因子降低,长波通道的滤波品质因子升高;随着B介质薄膜光学厚度D_B增大,滤波器短波通道和长波通道的滤波品质因子均下降;随着D介质薄膜光学厚度D_D增大,滤波器短波通道的滤波品质因子升高,而长波通道的滤波品质因子降低;随着各薄膜介质层光学厚度增大,滤波器双通道均向长波方向红移,但各滤波通道的光透射率均保持100%不变。该研究结果可为光子晶体设计新型光学滤波器件、光学开关等提供参考。 In order to design optical filter with high quality,dual-channel optical filter in quaternary-heterostructure photonic crystal(ABC)7D(CBA)7 was constructed by using transfer matrix method and the characteristics were studied.The results show that,with the increasing of D A(or D C),the filtering quality factor of short wave channel decreases and quality factor of long wave channel increases.With the increasing of D B,both the filtering quality factors of short and long wave channels decrease.With the increasing of D D,quality factor of short wave channel increases and quality factor of long wave channel decreases.With the increasing of optical thickness,both channels of the filter are red shifted toward long wave.Optical transmittances of each filter channel remain constant perfectly.The study can provide the reference for the design of new optical filters and optical switches of photonic crystals.
作者 韦应生 苏安 许江勇 唐秀福 蒙成举 高英俊 WEI Yingsheng;SU An;XU Jiangyong;TANG Xiufu;MENG Chengju;GAO Yingjun(Department of Physics and Engineering,Xingyi Normal University for Nationalities,Xingyi 562400,China;Department of Physics and Mechanical&Electronic Engineering,Hechi University,Yizhou 546300,China;Department of Physical Science and Engineering,Guangxi University,Nanning 530004,China)
出处 《激光技术》 CAS CSCD 北大核心 2018年第2期212-216,共5页 Laser Technology
基金 国家自然科学基金资助项目(51161003) 贵州省科技厅科技计划基金资助项目(黔科合LH字2016-7039号) 贵州省黔西南州科技局科技计划基金资助项目(2014-3) 广西高校科学技术研究资助项目(KY2015YB258 KY2016LX287) 河池学院青年基金资助项目(XJ2015QN006)
关键词 材料 光电子学 传输矩阵法 光学滤波 异质结构 光子晶体 materials optoelectronics transmission matrix optical filter heterostructure photonic crystal
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