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A microwave channelizer and spectroscope based on an integrated optical Bragg-grating Fabry-Perot and integrated hybrid Fresnel lens system

机译:基于集成光学布拉格光栅法布里 - 珀罗和集成混合菲涅尔透镜系统的微波信道器和分光镜

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摘要

A compact means to separate microwave and millimeter-wave optical signals by RF frequency in real time is demonstrated. The approach is to employ an integrated optical Bragg grating Fabry-Perot (BGFP) device to spatially separate optically modulated microwave signals with high resolution. The compactness is achieved through the use of an integrated optical hybrid diffractive lens beam expander to provide the required optical wavefront to the BGFP. A proof-of-principle measurement was performed from 1 to 23 GHz with peak finesse of 27. The theoretical analysis, fabrication procedure, experimental results, limitations, and improvements are described.
机译:演示了一种通过RF频率实时分离微波和毫米波光信号的紧凑方法。该方法是采用集成的光学布拉格光栅Fabry-Perot(BGFP)设备在空间上分离具有高分辨率的光学调制的微波信号。通过使用集成的光学混合衍射透镜扩束器来实现紧凑,从而为BGFP提供所需的光波前。在1至23 GHz范围内进行原理验证测量,峰值精细度为27。描述了理论分析,制造过程,实验结果,局限性和改进。

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