中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Design of infrared polarizer based on sub-wavelength metal wire grid

文献类型:会议论文

作者Guo, Wenrui1; Li, Zhiwei1; Gao, Hongtao1; Xia, Liangping1; Shi, Lifang1; Deng, Qiling1; Du, Chunlei2
出版日期2013
会议名称Proceedings of SPIE: Eighth International Symposium on Precision Engineering Measurements and Instrumentation
会议日期2013
卷号8759
页码87593I
通讯作者Li, Z. (lzw@ioe.ac.cn)
中文摘要High performance infrared polarizer with broad band is required for various infrared applications. The conventional infrared polarizer, based on the birefringence effect of natural crystal, is cost-consuming in fabrication and can hardly be integrated into micro-optical systems due to its large bulk. In this paper, an infrared polarizer is proposed in the spectrum from 3 to 19 μm based on sub-wavelength metal wire grid. The dependence of the performance on some key parameters, including metal materials, geometrical parameters, has been deeply investigated by using the Finite-Difference Time-Domain (FDTD) method. The results show that Au wire-grids have a higher transmittance for the Transverse MagneticiˆTMi mode light than that of other metal materials, and both the grid period and the grid thickness have important impact on the performance. Based on these observations, a polarizer has been designed by choosing the optimal value of related parameters. Numerical simulation suggests that the designed infrared wire grid polarizer have advantages of broad band, high TM polarization transmission efficiencies and high extinction ratios. The transmission efficiencies of TM polarization are larger than 59.3%, and the extinction ratios range from 28.6 to 44.6 dB in that range of the spectrum. © 2013 SPIE.
英文摘要High performance infrared polarizer with broad band is required for various infrared applications. The conventional infrared polarizer, based on the birefringence effect of natural crystal, is cost-consuming in fabrication and can hardly be integrated into micro-optical systems due to its large bulk. In this paper, an infrared polarizer is proposed in the spectrum from 3 to 19 μm based on sub-wavelength metal wire grid. The dependence of the performance on some key parameters, including metal materials, geometrical parameters, has been deeply investigated by using the Finite-Difference Time-Domain (FDTD) method. The results show that Au wire-grids have a higher transmittance for the Transverse MagneticiˆTMi mode light than that of other metal materials, and both the grid period and the grid thickness have important impact on the performance. Based on these observations, a polarizer has been designed by choosing the optimal value of related parameters. Numerical simulation suggests that the designed infrared wire grid polarizer have advantages of broad band, high TM polarization transmission efficiencies and high extinction ratios. The transmission efficiencies of TM polarization are larger than 59.3%, and the extinction ratios range from 28.6 to 44.6 dB in that range of the spectrum. © 2013 SPIE.
收录类别EI
学科主题Finite difference time domain method - Light extinction - Measurements - Metals - Optical instruments - Plasma diagnostics - Polarization - Precision engineering - Time domain analysis
语种英语
ISSN号0277786X
源URL[http://ir.ioe.ac.cn/handle/181551/7657]  
专题光电技术研究所_微电子装备总体研究室(四室)
作者单位1.State Key Laboratory of Optical Technologies for Microfabrication, Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, China
2.Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Sciences, Chongqing 401122, China
推荐引用方式
GB/T 7714
Guo, Wenrui,Li, Zhiwei,Gao, Hongtao,et al. Design of infrared polarizer based on sub-wavelength metal wire grid[C]. 见:Proceedings of SPIE: Eighth International Symposium on Precision Engineering Measurements and Instrumentation. 2013.

入库方式: OAI收割

来源:光电技术研究所

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