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Error Probabilities for Optical Receivers That Employ Dynamically Biased Avalanche Photodiodes

机译:采用动态偏置雪崩光电二极管的光接收器的错误概率

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摘要

A novel theory was recently reported for the avalanche multiplication process in avalanche photodiodes (APDs) under dynamic reverse-biasing conditions. It has been shown theoretically that the bit-synchronized, periodic modulation of the electric field in the multiplication region can offer improvements in the gain-bandwidth product by reducing intersymbol interference in optical receivers. This paper reports a rigorous formulation of the sensitivity of optical receivers that employ dynamically biased APDs. To enable the sensitivity analysis, a recurrence theory is developed to calculate the joint probability distribution function (PDF) of the stochastic gain and avalanche buildup time in APDs that are operated under dynamic biasing. It is shown that in an ideal buildup-time limited scenario, a minimum receiver sensitivity of −20 dBm is predicted at an optimal gain of approximately 47 for a 60 Gb/s communication system, compared to a minimum of 0 dBm in the static-bias case. The receiver sensitivity analysis also reveals that, as the peak-to-peak voltage of the dynamic reverse bias increases, the device optimal gain increases while maintaining a short avalanche buildup time and reduced ISI. Of course, a point of diminishing return exists in practice when the tunneling current in the multiplication region becomes dominant.
机译:最近报道了一种新颖的理论,用于动态反向偏置条件下雪崩光电二极管(APD)中的雪崩倍增过程。理论上已经表明,通过减少光接收机中的符号间干扰,乘法区域中电场的位同步周期调制可以改善增益带宽积。本文报告了采用动态偏置APD的光接收机灵敏度的严格公式。为了进行敏感性分析,开发了一种递归理论来计算在动态偏置下运行的APD中随机增益和雪崩累积时间的联合概率分布函数(PDF)。结果表明,在理想的建立时间受限的情况下,对于60 Gb / s的通信系统,在约47的最佳增益下,可预测到-20 dBm的最小接收器灵敏度,而静态通信系统中的最小接收器灵敏度为0 dBm。偏见情况。接收器灵敏度分析还显示,随着动态反向偏置的峰峰值电压增加,器件的最佳增益会增加,同时保持较短的雪崩累积时间并降低ISI。当然,当倍增区域中的隧穿电流成为主导时,实际上存在着递减点。

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