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Linear-mode avalanche photo-diode detectors with a quasi-deterministic gain component: statistical model studies

机译:具有准确定增益分量的线性模式雪崩光电二极管检测器:统计模型研究

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The optoelectronic gain of a linear mode avalanche photo-diode (APD) results from the cascade of electron and hole impact ionizations that take place in the high-field intrinsic multiplication layer of the APD. Due to the uncertainty associated with the stochastic nature of the APD's gain, the shot noise present in the resulting photo-generated electrical signal is accentuated and degrades the detection of single photon initiated avalanche signals. Recent advances in linearmode InGaAs APD detectors have been demonstrated that have reduced excess noise, along with the high gain necessary for detecting single photons. In these devices the avalanche buildup is characterized with a temporally varying noise. At low incident photon / photo-electron levels, the stochastic nature of the impulse response function of these APDs offers the potential of increased probability that the output exceeds a threshold level resulting in a "detection" and, hence, a better receiver-operating-characteristic (ROC). In this paper we examine the ROC (Pdetection vs PFalseAlarm) statistics of these single photon APDs as a function of the quasi-deterministic mean gain and standard deviation for an rms ROIC (readout integrated circuit) noise level of 25e-. Single photo-electron and multiple photo-electron detection statistics are also examined for predicting a ROC. Measured linear-mode APD data are also presented
机译:线性模式雪崩光电二极管(APD)的光电增益来自在APD的高场本征倍增层中发生的电子和空穴碰撞电离级联。由于与APD增益的随机性相关的不确定性,导致在产生的光生电信号中出现的散粒噪声被加重,并降低了单光子引发的雪崩信号的检测能力。线性模式InGaAs APD检测器的最新进展已被证明具有降低的过大噪声以及检测单个光子所需的高增益。在这些设备中,雪崩累积的特征是随时间变化的噪声。在低入射光子/光电子能级下,这些APD的脉冲响应函数的随机性可能会增加输出超过阈值电平的可能性,从而导致“检测”,因此,更好的接收器-特征(ROC)。在本文中,我们针对25e-均方根ROIC(读出集成电路)噪声水平的准确定平均增益和标准偏差,研究了这些单光子APD的ROC(Pdetection与PFalseAlarm)统计数据。还检查了单光电子和多光电子检测统计数据,以预测ROC。还介绍了测量的线性模式APD数据

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