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不对称级联结构光子晶体的透射特性
引用本文:苏安,唐秀福,蒙成举,李艳新,陈霞,吴广玲,高英俊.不对称级联结构光子晶体的透射特性[J].激光与红外,2017,47(8):1013-1018.
作者姓名:苏安  唐秀福  蒙成举  李艳新  陈霞  吴广玲  高英俊
作者单位:河池学院 物理与机电工程学院,广西 宜州 546300;广西大学 物理科学与工程技术学院,广西 南宁 530004
基金项目:国家自然科学基金项目(No.51161003);广西高校科学技术研究项目(No.KY2015YB258,YB2014323KY2016LX287);国家级、广西区级大学生创新训练计划项目(No.201710605012,201710605065,201710605066)资助
摘    要:通过传输矩阵法理论,计算和研究不对称级联结构光子晶体的透射特性,结果表明:对于级联镜像对称结构光子晶体,透射谱的禁带中出现单条透射率为100%的透射峰,随着级联数目增大,单透射峰越来越精细并快速向长波方向移动,产生蓝移现象,但透射峰的透射率不变。对于不对称级联结构光子晶体,随着级联数目或级联周期不对称度增大,透射谱中单透射峰的透射率迅速下降,同时透射峰的位置随禁带缓慢向短波方向移动,产生红移现象;随着级联结构不对称度增大,透射谱中单透射峰的透射率缓慢下降,同时透射峰的位置快速向短波方向移动,产生红移现象。不对称级联结构光子晶体的透射特性,对光学滤波器、光学全反射镜和光学开关等器件的研究和设计有一定的指导价值。

关 键 词:光子晶体  级联结构  不对称度  透射特性

Transmission characteristics of photonic crystal with asymmetric cascade structure
SU An,TANG Xiu-fu,MENG Cheng-ju,LI Yan-xin,CHEN Xi,WU Guang-ling,GAO Ying-jun.Transmission characteristics of photonic crystal with asymmetric cascade structure[J].Laser & Infrared,2017,47(8):1013-1018.
Authors:SU An  TANG Xiu-fu  MENG Cheng-ju  LI Yan-xin  CHEN Xi  WU Guang-ling  GAO Ying-jun
Abstract:The transmission properties of asymmetric cascade photonic crystal were calculated and studied by transmission matrix method theory.The results show that for the cascade mirror symmetrical photonic crystal,there appears a single transmission peak(the transmittance is 100%) in the band gap,and the single transmission peak is more and more refined and moves toward the long wave direction with the increase of the number of the cascade,but the transmittance remains constant .For the asymmetric cascade photonic crystal,the transmittance of single peak declines rapidly and its position moves to the short wave direction with the increase of the number of the cascade or the cascade cycle asymmetry.The transmission of single peak declines slowly and its position moves rapidly to short waves direction with the increase of the cascade structure asymmetry.The transmission properties of asymmetric cascade photonic crystal have a certain reference value for the design and research of optical filter,optical total reflection mirror and optical switch.
Keywords:photonic crystal  cascade structure  asymmetry  transmission characteristics
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