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Photonic Heterodyne Pixel for Imaging Arrays at Microwave and MM-Wave Frequencies

机译:用于微波和毫米波频率成像阵列的光子外差像素

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The use of photonic heterodyne receivers based on semiconductor optical amplifiers to be used in imaging arrays at several GHz frequencies is evaluated. With this objective, a3×3imaging array based on such photonic pixels has been fabricated and characterized. Each of the receiving optoelectronic pixels is composed of an antipodal linear tapered slot antenna (LTSA) that sends the received RF signal directly to the electrical port of a semiconductor opticalamplifier (SOA) acting as the optoelectronic mixer. Both the local oscillator (LO) and the intermediate frequency (IF) signals are directly distributed to/from the array pixels using fiber optics, that allows for remote LO generation and IF processing to recover the image. The results shown in this work demonstrate that the performances of the optoelectronic imaging array are similar to a reference all-electronic array, revealing the possibility of using this photonic architecture in future high-density, scalable, compact imaging arrays in microwave and millimeter wave ranges.
机译:评估了基于半导体光放大器的光子外差接收器在数个GHz频率的成像阵列中的使用。为了这个目的,已经制造并表征了基于这种光子像素的3×3成像阵列。每个接收光电像素都由一个对向线性锥形缝隙天线(LTSA)组成,该天线将接收到的RF信号直接发送到充当光电混频器的半导体光放大器(SOA)的电端口。使用光纤将本地振荡器(LO)和中频(IF)信号直接分配到阵列像素/从阵列像素直接分配到阵列像素,这允许远程LO生成和IF处理以恢复图像。这项工作中显示的结果表明,光电成像阵列的性能与参考全电子阵列相似,从而揭示了在未来的微波和毫米波范围内的高密度,可缩放,紧凑型成像阵列中使用这种光子架构的可能性。

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