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Analysis and Circuit Modeling of Waveguide-Separated Absorption Charge Multiplication-Avalanche Photodetector (WG-SACM-APD)

机译:波导分离吸收电荷倍增雪崩光电探测器(WG-SACM-APD)的分析和电路建模

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Waveguide photodetectors are considered leading candidates to overcome the bandwidth efficiency tradeoff of conventional photodetectors. In this paper, a theoretical physics-based model of the waveguide separated absorption charge multiplication avalanche photodetector (WG-SACM-APD) is presented. Both time and frequency modeling for this photodetector are developed and simulated results for different thicknesses of the absorption and multiplication layers and for different areas of the photodetector are presented. These simulations provide guidelines for the design of these high-performance photodiodes. In addition, a circuit model of the photodetector is presented in which the photodetector is a lumped circuit element so that circuit simulation of the entire photoreceiver is now feasible. The parasitics of the photodetector are included in the circuit model and it is shown how these parasitics degrade the photodetectors performance and how they can be partially compensated by an external inductor in series with the load resistor. The results obtained from the circuit model of the WG-SACM-APD are compared with published experimental results and good agreement is obtained. This circuit modeling can easily be applied to any WG-APD structure. The gain-bandwidth characteristic of WG-SACM-APD is studied for different areas and thicknesses of both the absorption and the multiplication layers. The dependence of the performance of the photodetector on the dimensions, the material parameters and the multiplication gain are also investigated.
机译:波导光电探测器被认为是克服常规光电探测器的带宽效率折衷的领先候选者。本文提出了一种基于理论的波导分离吸收电荷乘积雪崩光电探测器(WG-SACM-APD)的理论模型。开发了该光电探测器的时间和频率建模,并给出了不同厚度的吸收层和乘法层以及光电探测器不同区域的仿真结果。这些仿真为这些高性能光电二极管的设计提供了指导。另外,提出了光电检测器的电路模型,其中光电检测器是集总电路元件,使得整个光电接收器的电路仿真现在是可行的。电路模型中包含光电检测器的寄生效应,并显示了这些寄生效应如何降低光电检测器的性能,以及如何通过与负载电阻串联的外部电感器对它们进行部分补偿。从WG-SACM-APD的电路模型获得的结果与公开的实验结果进行了比较,并获得了很好的一致性。这种电路建模可以轻松地应用于任何WG-APD结构。针对吸收层和乘法层的不同面积和厚度,研究了WG-SACM-APD的增益带宽特性。还研究了光电探测器性能对尺寸,材料参数和倍增增益的依赖性。

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