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Progress in self-quenching InP-based single photon detectors

机译:基于自熄的基于INP的单光子探测器的进展

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The operation of InP-based single photon avalanche diodes (SPADs) in Geiger mode provides great utility for the detection of single photons at near-infrared wavelengths between 1.0 and 1.6μm. However, SPADs have performance limitations with respect to photon counting rate and the absence of photon number resolution that, at the most fundamental level, can be traced back to the positive feedback inherent in the impact ionization-driven avalanche process. In this paper, we describe the inclusion of negative feedback with best-in-class InP-based single photon avalanche diode (SPAD) structures to form negative feedback avalanche diodes (NFADs) in which many of the present limitations of SPAD operation can be overcome. The use of thin film resistors as monolithic passive negative feedback elements ensures rapid self-quenching with very low parasitic effects. We demonstrate a qualitative difference in the performance of NFADs in the two regimes of small and large negative feedback. With small feedback, we have studied the behavior of the persistent current prior to quenching, for which we have found oscillatory behavior as well as an exponentially distributed duration. For large feedback, we find rapid quenching, accompanied by evidence for a partial discharge of the detector capacitance, leading to charge flows as low as ~3x10~5 carriers associated with each avalanche event.
机译:Geiger模式中基于INP的单光子雪崩二极管(SPAD)的操作提供了优异的效用,用于在1.0和1.6μm之间的近红外波长处检测单个光子。然而,对于光子计数率并且没有光子数分辨率,在最基地的情况下具有性能限制可以追溯到冲击电离驱动的雪崩过程中固有的正反馈。在本文中,我们描述了与基于最佳的基于INP的单光子雪崩二极管(SPAD)结构的负反馈包括为形成负反馈雪崩二极管(NFAD),其中可以克服许多当前SPAD操作的限制。使用薄膜电阻作为单片无源负反馈元件,确保快速自淬,寄生效应非常低。我们展示了在小型和大负面反馈的两种制度中的NFAD性能的定性差异。具有小的反馈,我们研究了在淬火之前的持久电流的行为,我们发现了振荡行为以及指数分布的持续时间。对于大反馈,我们发现快速淬火,伴随着探测器电容的局部放电的证据,导致电荷流低至与每个雪崩事件相关联的载波低至3x10〜5载波。

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