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Systematic afterpulsing-estimation algorithms for gated avalanche photodiodes

机译:门控雪崩光电二极管的系统后脉冲估计算法

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摘要

We present a method designed to efficiently extract optical signals from InGaAs avalanche photodiodes (APDs) operated in gated mode. In particular, our method permits an estimation of the fraction of counts that actually results from the signal being measured, as opposed to being produced by noise mechanisms, specifically by afterpulsing. Our method in principle allows the use of InGaAs APDs at high detection efficiencies, with the full operation bandwidth, either with or without resorting to the application of a dead-time. As we show below, our method can be used in configurations where afterpulsing exceeds the genuine signal by orders of magnitude, even near saturation. The algorithms that we have developed are suitable to be used either in real-time processing of raw detection probabilities or in post-processing applications, after a calibration step has been performed. The algorithms that we propose here can complement technologies designed for the reduction of afterpulsing. (C) 2016 Optical Society of America
机译:我们提出了一种旨在从门控模式下运行的InGaAs雪崩光电二极管(APD)有效提取光信号的方法。特别是,我们的方法可以估算出实际上是由被测信号产生的计数的一部分,而不是由噪声机制产生的,特别是由后脉冲产生的。我们的方法原则上允许在不使用死区时间的情况下,以高检测效率和完整的操作带宽使用InGaAs APD。如下所示,我们的方法可用于后脉冲超过真实信号达几个数量级,甚至接近饱和的配置中。在执行校准步骤后,我们开发的算法适用于原始检测概率的实时处理或后处理应用。我们在这里提出的算法可以补充为减少后脉冲而设计的技术。 (C)2016美国眼镜学会

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