Zeng Xuan, Yu Xuzhen, Zhang Hewei, Lu Yi, Zhao Yanli
Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan 430074, China.
Sensors (Basel). 2025 Mar 8;25(6):1671. doi: 10.3390/s25061671.
This paper presents two novel avalanche photodiode (APD) array structures designed to significantly enhance both detection area and bandwidth, overcoming the common trade-off between these parameters in conventional photodetectors. The impact of various parameters on the bandwidths of the two distinct array structures was theoretically simulated. Experimental validation using the self-fabricated 2 × 2 array on PCB board confirmed the bandwidth enhancement realized through inductor integration, with one APD array demonstrating an increase to 780 MHz (1.41 times greater) and another showing an increase to 1.21 GHz (1.35 times greater). Unlike prior works where array bandwidth is often lower than single detectors, our structures maintain high bandwidth while expanding the detection area. Structure 2 is particularly recommended over Structure 1 because of its lower noise, better signal-to-noise ratio (SNR), and reduced power consumption.
本文介绍了两种新型雪崩光电二极管(APD)阵列结构,其设计目的是显著增加探测面积和带宽,克服传统光电探测器中这些参数之间常见的权衡。从理论上模拟了各种参数对两种不同阵列结构带宽的影响。使用在印刷电路板上自行制作的2×2阵列进行的实验验证证实了通过电感集成实现的带宽增强,其中一个APD阵列的带宽增加到780 MHz(增大了1.41倍),另一个增加到1.21 GHz(增大了1.35倍)。与之前阵列带宽通常低于单个探测器的工作不同,我们的结构在扩大探测面积的同时保持了高带宽。由于结构2噪声更低、信噪比(SNR)更好且功耗更低,因此特别推荐使用结构2而不是结构1。