利用单光子雪崩二极管相机进行闪烁事件成像

Alex Bocchieri, Edoardo Charbon, Andreas Velten
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引用次数: 0

摘要

对闪烁事件的位置和时间测量可以编码辐射源的信息。单光子雪崩二极管(SPAD)阵列具有数百万像素的空间分辨率和数十皮秒的时间分辨率,可用于探测单光子。目前用于测量闪烁事件的无透镜设计使用的传感器空间分辨率较低。基于摄像头的设计使用的传感器时间分辨率或读出率较低,无法对单个相互作用成像。在此,我们建议使用高分辨率 SPAD 摄像机对厚整体闪烁体中的闪烁事件进行成像。我们证明,商用 SPAD 相机能够收集足够的信号,对单个闪烁事件进行成像,并观察其空间分布的三维变化。模拟结果表明,SPAD 摄像机可以在三维空间定位单个闪烁事件。我们报告了利用 SPAD 相机对闪烁体中的伽马射线相互作用进行直接成像的情况。建议的设计可以测量闪烁体中相互作用的单个粒子的复杂特征。Alex Bocchieri 及其同事提出了一种利用高分辨率 SPAD 摄像机在厚整体闪烁体中成像的技术。他们报告了闪烁体中伽马射线相互作用的直接成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Scintillation event imaging with a single photon avalanche diode camera

Scintillation event imaging with a single photon avalanche diode camera
Position and time measurements of scintillation events encode information about the radiation source. Single photon avalanche diode (SPAD) arrays offer multiple-megapixel spatial resolution and tens of picoseconds temporal resolution for detecting single photons. Current lensless designs for measuring scintillation events use sensors that are lower in spatial resolution. Camera-based designs use sensors that are lower in temporal resolution or readout rate and cannot image individual interactions. Here we propose to image scintillation events in a thick, monolithic scintillator using a high-resolution SPAD camera. We demonstrate that a commercial SPAD camera is able to gather sufficient signal to image individual scintillation events and observe 3D shifts in their spatial distribution. Simulations show that a SPAD camera can localize individual scintillation events in 3D. We report direct imaging of gamma-ray interactions in a scintillator with a SPAD camera. The proposed design may allow to measure complex signatures of individual particles interacting in the scintillator. Alex Bocchieri and colleagues propose an imaging technique in a thick, monolithic scintillator using a high-resolution SPAD camera. They report a direct imaging of gamma-ray interactions in a scintillator.
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