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基于亚波长金属-电介质光栅的偏振滤光片。

Polarizing color filter based on a subwavelength metal-dielectric grating.

作者信息

Ye Yan, Zhou Yun, Zhang Heng, Chen Linsen

机构信息

Institute of Information Optical Engineering, Soochow University, Suzhou 215006, China.

出版信息

Appl Opt. 2011 Apr 1;50(10):1356-63. doi: 10.1364/AO.50.001356.

Abstract

We propose a polarizing color filter based on a one-dimensional subwavelength metal-dielectric grating combining the functions of a polarizer and a color filter. The proposed device consists of three parts: a substrate, a dielectric grating, and a metal grating. The effects of the dielectric grating and the metal grating are investigated in detail by rigorous coupled-wave analysis. Performance is enhanced effectively by utilizing a dielectric grating of high equivalent refractive index. Typical optimized structural parameters are obtained, in which more than 72.6% broadband transmission with >21 dB polarization extinction ratio are simultaneously achieved for a tricolor filter. For transverse electric (TE) polarized light, its reflection efficiency is more than 71.8% in the broad passband light range, which can be recycled by rotating the TE polarization in part into transverse magnetic polarization and reimpinging on the designed device to increase the total energy efficiency. Numerical results show that peak transmission efficiency (PTE) is increased by at least 12.9% using recycled TE-polarized light.

摘要

我们提出了一种基于一维亚波长金属 - 介质光栅的偏振滤色器,它结合了偏振器和滤色器的功能。所提出的器件由三部分组成:一个衬底、一个介质光栅和一个金属光栅。通过严格耦合波分析详细研究了介质光栅和金属光栅的作用。利用高等效折射率的介质光栅有效地提高了性能。获得了典型的优化结构参数,对于三色滤光器,同时实现了超过72.6%的宽带透射率和大于21 dB的偏振消光比。对于横向电(TE)偏振光,在宽通带光范围内其反射效率超过71.8%,可以通过将部分TE偏振旋转为横向磁偏振并重新照射到设计的器件上来回收,以提高总能量效率。数值结果表明,使用回收的TE偏振光,峰值传输效率(PTE)至少提高了12.9%。

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