Peng Wang, yingzhi Li, xianqi pang, Haolun Du, Ziming Wang, Wenqiang Yue, Min Liu, Shengxiang Zhang, Lei Liang, Baisong Chen, Xiaolong Hu, Xi Xiao, Lijun Wang, Junfeng Song
Frequency modulated continuous wave (FMCW) LiDAR offers strong interference immunity, eye safety, and simultaneous distance-velocity measurement. However, long-range and low-reflectivity detection is often limited by polarization fading, reduced return power, bandwidth constraints, and system noise. This work presents a silicon-photonic polarization-diverse coherent receiver that enables both polarization states of the return signal to participate in coherent detection, reducing polarization-induced fading. A pipeline real-time constant false-alarm rate (CFAR) is further incorporated to robustly identify beat-frequency peaks under long-range and high-frequency-attenuated conditions. Experiments show that for a 200 m target with 10% reflectivity, the detection probability increases from 43.5% to 97% after applying CFAR and polarization-diverse detection. The system achieves real-time 4D imaging at 100,000 points per second, demonstrating improved detection reliability for integrated FMCW LiDAR.