近红外宽带全方向反射镜的设计  

Design of a Broad Omnidirectional Reflector in the Near-infrared Band

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作  者:刘文莉[1] 袁一丹[1] 唐婷婷[1] 何修军[1] 

机构地区:[1]成都信息工程学院光电技术学院,成都610225

出  处:《人工晶体学报》2015年第1期221-226,共6页Journal of Synthetic Crystals

基  金:四川省科技厅资助项目(2014ZR0044);四川省教育厅资助项目(13Z200)

摘  要:研究了一维光子晶体的全方向反射镜。用传输矩阵法分析了影响全反镜全方向反射带带宽和位置的因素。利用带隙展宽理论,构建异质结构光子晶体,设计得到了近红外宽带全反射镜。比较发现,Te/SiO2构成的一维异质结构全向带反射特性优于TiO2/SiO2构成的一维异质结构,该反射镜TE偏振波的全方向反射带分布在近红外波段1001-2999 nm范围内,TM偏振波的全向反射带分布在1001-2323 nm波段范围内,获得的反射率高于98%,而薄膜层数只需要20层。The omnidirectional reflectors based on one-dimensional photonic crystals were investigated.The effects on band-position and band-width of the omnidirectional reflection(ODR) band were analyzed by transmission matrix method. Based on the wide band gap theory, a near-infrared broadband omnidirectional reflector was designed with heterostructure photonic crystals. Compared heterostructures composed of Te /SiO2 with TiO2/SiO2,it is found that ODR band characteristics of the former is superior to the latter. The ODR band of TE polarized wave located in the near-infrared range of 1001-2999 nm;the ODR band of TM polarized wave located in the near-infrared range of 1001-2323 nm,and reflection rate obtained is more than 98%,while the number of the layers is just 20.

关 键 词:光子晶体 全方向反射 异质结构 近红外宽带 

分 类 号:O436[机械工程—光学工程]

 

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