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Gated Geiger mode avalanche photodiode pixels with integrated readout electronics for low noise photon detection

机译:门控盖革模式雪崩光电二极管像素,集成了读出电子器件,可实现低噪声光子检测

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摘要

Avalanche photodiodes operated in the Geiger mode offer a high intrinsic gain as well as an excellent timing accuracy. These qualities make the sensor specially suitable for those applications where detectors with high sensitivity and low timing uncertainty are required. Moreover, they are compatible with standard CMOS technologies, allowing sensor and front-end electronics integration within the pixel cell. However, the sensor suffers from high levels of intrinsic noise, which may lead to erroneous results and limit the range of detectable signals. They also increase the amount of data that has to be stored. In this work, we present a pixel based on a Geiger-mode avalanche photodiode operated in the gated mode to reduce the probability to detect noise counts interfering with photon arrival events. The readout circuit is based on a two grounds scheme to enable low reverse bias overvoltages and consequently lessen the dark count rate. Experimental characterization of the fabricated pixel with the HV-AMS 0.35µm standard technology is also presented in this article.
机译:在盖革模式下工作的雪崩光电二极管具有很高的固有增益以及出色的定时精度。这些品质使该传感器特别适合需要高灵敏度和低时序不确定性的探测器的应用。而且,它们与标准CMOS技术兼容,从而允许传感器和前端电子设备集成在像素单元内。但是,传感器会遭受高水平的固有噪声,这可能导致错误结果并限制可检测信号的范围。它们还增加了必须存储的数据量。在这项工作中,我们提出了一种基于以门控模式工作的盖革模式雪崩光电二极管的像素,以减少检测干扰光子到达事件的噪声计数的可能性。读出电路基于两个接地方案,以实现低反向偏置过电压,并因此降低了暗计数率。本文还介绍了使用HV-AMS 0.35µm标准技术对制成的像素进行实验表征。

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