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Fast-gating of single-photon avalanche diodes with 200 ps transitions and 30 ps timing jitter

机译:具有200 ps跃迁和30 ps时序抖动的单光子雪崩二极管的快速门控

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摘要

We present circuits and methods for fast-gating a silicon single-photon avalanche diode (SPAD) in order to attain wide dynamic range in the measurement of very faint and very fast optical signals. A mixed-signal amplifier comprising ECL logic and microwave components allows to achieve turn-ON and turn-OFF transition times below 200 ps and gating windows from 10 ns down to just few hundreds of picoseconds. A differential front-end electronics reads out the avalanche current pulse while rejecting spurious spikes due to the gate pulse, thus achieving a photon detection timing jitter below 30 ps. This paper describes the conceived circuit solutions, the overall instrument development and the results of its characterization and validation.
机译:我们介绍了用于快速选通硅单光子雪崩二极管(SPAD)的电路和方法,以便在非常微弱和非常快的光信号的测量中获得宽动态范围。包含ECL逻辑和微波组件的混合信号放大器可实现低于200 ps的开启和关闭转换时间,以及从10 ns到几百皮秒的选通窗口。差分前端电子设备读出雪崩电流脉冲,同时抑制由于栅极脉冲引起的寄生尖峰,从而实现了低于30 ps的光子检测时序抖动。本文介绍了设想的电路解决方案,整个仪器的开发以及其表征和验证的结果。

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