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Avoiding sensor blindness in Geiger mode avalanche photodiode arrays fabricated in a conventional CMOS process

机译:避免以常规CMOS工艺制造的Geiger模式雪崩光电二极管阵列中的传感器失明

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摘要

The need to move forward in the knowledge of the subatomic world has stimulated the development of new particle colliders. However, the objectives of the next generation of colliders sets unprecedented challenges to the detector performance. The purpose of this contribution is to present a bidimensional array based on avalanche photodiodes operated in the Geiger mode to track high energy particles in future linear colliders. The bidimensional array can function in a gated mode to reduce the probability to detect noise counts interfering with real events. Low reverse overvoltages are used to lessen the dark count rate. Experimental results demonstrate that the prototype fabricated with a standard HV-CMOS process presents an increased efficiency and avoids sensor blindness by applying the proposed techniques.
机译:在亚原子世界知识上不断前进的需求刺激了新型粒子对撞机的发展。然而,下一代对撞机的目标对探测器性能提出了前所未有的挑战。该贡献的目的是提出一种基于雪崩光电二极管的二维阵列,该雪崩光电二极管在Geiger模式下运行,以跟踪未来的线性对撞机中的高能粒子。二维阵列可以在门控模式下工作,以降低检测干扰真实事件的噪声计数的可能性。低反向过电压用于减小暗计数率。实验结果表明,采用标准的HV-CMOS工艺制造的原型通过应用所提出的技术可以提高效率,并避免传感器失明。

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