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Advances in CMOS solid-state photomultipliers for scintillation detector applications

机译:闪烁探测器应用中的CMOS固态光电倍增器的进展

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Solid-state photomultipliers (SSPMs) are a compact, lightweight, potentially low-cost alternative to a photomultiplier tube for a variety of scintillation detector applications, including digital-dosimeter and medical-imaging applications. Manufacturing SSPMs with a commercial CMOS process provides the ability for rapid prototyping, and facilitates production to reduce the cost. RMD designs CMOS SSPM devices that are fabricated by commercial foundries. This work describes the characterization and performance of these devices for scintillation detector applications. This work also describes the terms contributing to device noise in terms of the excess noise of the SSPM, the binomial statistics governing the number of pixels triggered by a scintillation event, and the background, or thermal, count rate. The fluctuations associated with these terms limit the resolution of the signal pulse amplitude. We explore the use of pixel-level signal conditioning, and characterize the performance of a prototype SSPM device that preserves the digital nature of the signal. In addition, we explore designs of position-sensitive SSPM detectors for medical imaging applications, and characterize their performance.
机译:固态光电倍增管(SSPM)是一种紧凑,轻巧,潜在的低成本替代品,可用于多种闪烁检测器应用,包括数字剂量计和医学成像应用。使用商业CMOS工艺制造SSPM可以提供快速原型制作的能力,并有助于降低成本的生产。 RMD设计由商业代工厂制造的CMOS SSPM器件。这项工作描述了用于闪烁探测器应用的这些设备的特性和性能。这项工作还用SSPM的过大噪声,控制由闪烁事件触发的像素数量的二项式统计量以及背景或热计数率来描述有助于设备噪声的术语。与这些术语相关的波动限制了信号脉冲幅度的分辨率。我们探索了像素级信号调理的使用,并描述了保留信号数字特性的SSPM原型设备的性能。此外,我们探索了用于医学成像应用的位置敏感型SSPM检测器的设计,并对其性能进行了表征。

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