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首页> 外文期刊>Applied optics >Enhanced performance configuration for fast-switching deformed helix ferroelectric liquid crystal continuous tunable Lyot filter
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Enhanced performance configuration for fast-switching deformed helix ferroelectric liquid crystal continuous tunable Lyot filter

机译:用于快速切换变形螺旋铁电液晶连续可调Lyot滤波器的增强性能配置

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摘要

In this paper, we present a novel design configuration of double DHFLC wave plate continuous tunable Lyot filter, which exhibits a rapid response time of 185 μs, while the high-contrast ratio between the passband and stop band is maintained throughout a wide tunable range. A DHFLC tunable filter with a high-contrast ratio is attractive for realizing high-speed optical processing devices, such as multispectral and hyperspectral imaging systems, real-time remote sensing, field sequential color display, and wavelength demultiplexing in the metro network. In this work, an experimental prototype for a single-stage DHFLC Lyot filter of this design has been fabricated using photoalignment technology. We have demonstrated that the filter has a continuous tunable range of 30 nm for a blue wavelength, 45 nm for a green wavelength, and more than 50 nm for a red wavelength when the applied voltage gradually increases from 0 to 8 V. Within this tunable range, the contrast ratio of the proposed double wave plate configuration is maintained above 20 with small deviation in the transmittance level. Simulation and experimental results showed the proposed double DHFLC wave plate configuration enhances the contrast ratio of the tunable filter and, thus, increases the tunable range of the filter when compared with the Lyot filter using a single DHFLC wave plate. Moreover, we have proposed a polarization insensitive configuration for which the efficiency of the existing prototype can theoretically be doubled by the use of polarization beam splitters.
机译:在本文中,我们提出了一种新颖的双DHFLC波片连续可调Lyot滤波器的设计配置,该滤波器具有185μs的快速响应时间,同时通带和阻带之间的高对比度在很宽的可调范围内得以保持。具有高对比度的DHFLC可调滤波器对于实现高速光学处理设备非常有吸引力,例如多光谱和高光谱成像系统,实时遥感,现场顺序彩色显示以及城域网中的波长多路分解。在这项工作中,已经使用光对准技术制造了这种设计的单级DHFLC Lyot滤波器的实验原型。我们已经证明,当施加电压从0 V逐渐增加到8 V时,滤光片的连续可调范围对于蓝色波长为30 nm,对于绿色波长为45 nm,对于红色波长为50 nm以上。在此范围内,所提出的双波片结构的对比度保持在20以上,而透射率水平的偏差很小。仿真和实验结果表明,与使用单个DHFLC波片的Lyot滤光片相比,所提出的双DHFLC波片构造提高了可调滤光片的对比度,因此增加了滤光片的可调范围。此外,我们提出了一种偏振不敏感配置,通过使用偏振分束器,理论上可以使现有原型的效率提高一倍。

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