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Microwave Photonic Devices Based on Liquid Crystal on Silicon Technology

机译:基于硅技术液晶的微波光子器件

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摘要

This paper reviews the recent developments in microwave photonic devices based on liquid crystal on silicon (LCOS) technology. The operation principle, functions and important specifications of an LCOS based optical processor are described. Three microwave photonic devices, which are microwave photonic notch filters, phase shifters and couplers, reported in the past five years are focused on in this paper. In addition, a new multi-function signal processing structure based on amplitude and phase control functions in conjunction with a power splitting function in a commercial LCOS based optical processor is presented. It has the ability to realize multiple time -shifting operations and multiple frequency-independent phase shifting operations at the same time and control multiple RF signal amplitudes, in a single unit. The results for the new multi-function microwave photonic signal processor demonstrate multiple tunable true time delay and phase shifting operations with less than 3 dB amplitude variation over a very wide frequency range of 10 to 40 GHz.
机译:本文综述了基于硅(LCOS)技术的液晶微波光子器件的最新发展。描述了基于LCOS的光学处理器的操作原理,功能和重要规范。在过去五年中报告的三种微波光子器件,其是微波光子缺口滤波器,相移和耦合器。另外,介绍了基于幅度和相位控制功能的新的多功能信号处理结构,其结合在基于商业LCOS的光学处理器中的功率分割功能。它能够在单个单元中同时实现多个时间 - 杂种操作和多个频率无关的相移操作并控制多个RF信号幅度。新的多功能微波光信号处理器的结果展示了多个可调的真延迟和相移操作,在10到40GHz的非常宽的频率范围内具有小于3dB的幅度变化。

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