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首页> 外文期刊>Journal of Modern Optics >A physically based model for evaluating the photon detection efficiency and the temporal response of SPAD detectors
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A physically based model for evaluating the photon detection efficiency and the temporal response of SPAD detectors

机译:基于物理的模型,用于评估SPAD检测器的光子检测效率和时间响应

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摘要

After a brief review of the physics of photon detection in single photon avalanche diode (SPAD) devices, in this paper we will outline the principle of operation of a model we developed with the aim of calculating both photon detection efficiency (PDE) and temporal response (TR) of these detectors. Then we will apply the model to the devices currently available in order to critically analyze some experimental results. We will show in particular how the use of the model allows us to gain a better understanding of the influence of each device parameter in determining both the PDE and the TR. Finally we will discuss some modifications that can be applied to the device structure in order to overcome such limitations. Their effectiveness in improving both the PDE and the TR will be investigated by means of the aforementioned model. The aim is to provide the reader with an insight of which performances can be expected in the next few years if a strong development of the SPAD structure is pursued.
机译:在简要回顾了单光子雪崩二极管(SPAD)设备中光子检测的物理原理之后,本文将概述我们开发的模型的工作原理,该模型旨在计算光子检测效率(PDE)和时间响应(TR)这些探测器。然后,我们将模型应用于当前可用的设备,以严格分析一些实验结果。我们将特别说明使用模型如何使我们更好地理解每个设备参数在确定PDE和TR方面的影响。最后,我们将讨论可以应用于设备结构的一些修改,以克服这些限制。将通过上述模型研究它们在改善PDE和TR方面的有效性。目的是向读者提供一个洞察力,如果追求SPAD结构的强劲发展,在未来几年内可以预期的表现。

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