IQ Photonic Receiver for Coherent Imaging With a Scalable Aperture

Aroutin Khachaturian;Reza Fatemi;Ali Hajimiri
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引用次数: 4

Abstract

Silicon photonics (SiP) integrated coherent image sensors offer higher sensitivity and improved range-resolution-product compared to direct detection image sensors such as CCD and CMOS devices. Previous generations of SiP coherent imagers suffer from relative optical phase fluctuations between the signal and reference paths, which results in random phase and amplitude fluctuations in the output signal. This limitation negatively impacts the SNR and signal acquisition times. Here, we present a coherent imager system that suppresses the optical carrier signal and removes non-idealities from the relative optical path using a photonic in-phase (I) and quadrature (Q) receiver via a 90° hybrid detector. Furthermore, we incorporate row-column read-out and row-column addressing schemes to address the electro-optical interconnect density challenge. Our novel row-column read-out architecture for the sensor array requires only $2N$ interconnects for N 2 sensors. An $8\times 8$ IQ sensor array is presented as a proof-of-concept demonstration with $1.2\times 10^{-5}$ resolution over range accuracy. Free-space FMCW ranging with $250 \mu \text {m}$ resolution at 1 m distance has been demonstrated using this sensor array.
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可伸缩孔径相干成像IQ光子接收机
与CCD和CMOS器件等直接检测图像传感器相比,硅光子(SiP)集成相干图像传感器提供了更高的灵敏度和改进的距离分辨率产品。前几代SiP相干成像器在信号和参考路径之间存在相对的光学相位波动,这导致输出信号中的随机相位和振幅波动。这种限制对SNR和信号采集时间产生了负面影响。在这里,我们提出了一种相干成像器系统,该系统通过90°混合探测器使用光子同相(I)和正交(Q)接收器来抑制光载波信号并从相对光路中去除非理想性。此外,我们结合了行-列读出和行-列寻址方案来解决电光互连密度的挑战。我们用于传感器阵列的新型行-列读出架构仅需要N2传感器的$2N$互连。一个$8\times8$IQ传感器阵列作为概念验证演示,在距离精度上具有$1.2\times10^{-5}$的分辨率。使用该传感器阵列已经证明了在1米距离处具有$250μ\text{m}$分辨率的自由空间FMCW测距。
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