首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >Low power photonic devices based on electrically controlled nematic liquid crystals embedded in poly(dimethylsiloxane)
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Low power photonic devices based on electrically controlled nematic liquid crystals embedded in poly(dimethylsiloxane)

机译:基于聚(二甲基硅氧烷)的电控向列液晶的低功率光子器件

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摘要

We present a new class of photonic devices in which light is confined in channel waveguides, named LC:PDMS, made of a nematic liquid crystal (LC) core in a poly(dimethylsiloxane) flexible substrates. Monte Carlo techniques have been used to study LC orientation. Homeotropic alignment of LC molecules has been observed without any applied electric field. A theoretical study of LC orientation under an electric field between coplanar gold electrodes deposited by electroplating has been carried. We report the design of two photonic devices based on LC:PDMS waveguide technology:a 2 x 2 optical switch made of a zero-gap electro-optical-controlled directional coupler and a multimodal interferometer (MMI) acting as an optical multi/demultiplexer. The electro-optical-controlled directional coupler is able to switch light from one waveguide to a second one with an extinction ratio of 16 dB with an applied voltage of just 1.62 V. Light remains in the same waveguide with an extinction ratio of about 18 dB with a voltage of 1.76 V. An MMI based on LC:PDMS technology has been designed to demultiplex wavelengths at 980 and 1550 nm in two output waveguides with an extinction ratio better than 11 dB by applying about 7 V.
机译:我们介绍了一种新的光子器件,其中光被限制在一个名为LC:PDMS的通道波导中,由聚(二甲基硅氧烷)柔性基材中的向列液晶(LC)芯制成。 Monte Carlo技术已被用于研究LC方向。已经观察到LC分子的统一性取向,而没有任何应用的电场。携带电镀沉积的共面金电极在电池之间LC取向的理论研究。我们报告了基于LC的两个光子器件的设计:PDMS波导技术:由零间隙电控制定向耦合器和用作光学多/多路分解器的多模式干涉仪(MMI)制成的2×2光开关。电光控制的定向耦合器能够将来自一个波导的光切换到具有16dB的施加电压的施加电压的施加比为1.62V的光的光。光保持在相同的波导中,其消光比为约18 dB电压为1.76 V.基于LC的MMI:PDMS技术设计成在两个输出波导中以980和1550nm的解复用波长,通过施加约7 V,消光比优于11dB。

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