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Evaluation of performance of silicon photomultipliers in LIDAR applications

机译:激光雷达应用中硅光电倍增管的性能评估

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Silicon Photomultipliers (SiPMs) are a well-recognized new generation of photon number resolving avalanche photodetectors. Many advantages - a high gain with an ultra-low excess noise of multiplication, multi-pixel architecture, relatively low operating voltage - make SiPMs very competitive in a growing number of applications. Challenging demands of LIDAR applications for a receiver having high sensitivity starting from single photons, superior time-of-flight resolution, robustness including surviving at bright light flashes, solid-state compactness and more, are expected to be feasible for the SiPMs. Despite some known drawbacks, namely crosstalk, afterpulsing, dark noise, limited dynamic range, SiPMs are already considered as promising substitutes for conventional APDs and PMTs in LIDAR applications. However, these initial considerations are based on a rather simplified representation of the SiPM as a generic LIDAR receiver described by generic expressions. This study is focused on a comprehensive evaluation of a SiPM potential considering essential features of this new technology, which could affect applicability and performance of SiPMs as LIDAR receivers. Namely, an excess noise due to correlated processes of crosstalk and afterpulsing, are included into account utilizing the well-established framework of analytical probabilistic models. The analysis of SiPM performance in terms of a photon number and time resolution clarifies their competitiveness over conventional APD and PMT and anticipates the development of next SiPM generations.
机译:硅光电倍增管(SiPM)是公认的新一代光子数解析雪崩光电探测器。许多优势-高增益和乘法的超低超额噪声,多像素架构以及相对较低的工作电压-使SiPM在越来越多的应用中极具竞争力。从单光子开始,具有高灵敏度,更高的飞行时间分辨率,鲁棒性(包括在强光下仍能生存),固态紧凑性等诸多方面的LIDAR接收机的挑战性需求对于SiPM而言是可行的。尽管存在一些已知的缺点,例如串扰,后脉冲,暗噪声,有限的动态范围,但SiPM已被认为是LIDAR应用中常规APD和PMT的有希望的替代品。但是,这些初始考虑是基于SiPM作为通用表达式描述的通用LIDAR接收器的简化表示。这项研究的重点是考虑到这项新技术的基本特征,对SiPM潜力进行全面评估,这可能会影响作为激光雷达接收器的SiPM的适用性和性能。即,利用已经建立的分析概率模型的框架,将由于串扰和后脉冲的相关过程引起的过量噪声考虑在内。通过光子数和时间分辨率对SiPM性能进行分析,阐明了它们相对于传统APD和PMT的竞争力,并有望下一代SiPM的发展。

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