论文标题

实现可重新配置的可重新配置的单光雪崩检测器的多个架构的主动淬火设计

Realizing a robust, reconfigurable active quenching design for multiple architectures of single-photon avalanche detectors

论文作者

Sachidananda, Subash, Gundlapalli, Prithvi, Leong, Victor, Krivitsky, Leonid, Ling, Alexander

论文摘要

用于单光量雪崩探测器的大多数活性淬火电路的设计具有离散的组件,这些组件缺乏动态更改控制参数的灵活性,或者使用需要长时间开发时间和高成本的自定义ASIC。作为替代方案,我们提出了使用片上系统(SOC)实现的可重构且可靠的混合设计,该设计同时集成了FPGA和微控制器。我们利用FPGA的速度和配置功能来在大范围内动态地改变淬火和重置参数,从而使我们的电路可以使用多种APD进行操作,而无需重新设计系统。微控制器可以远程调整控制参数并在现场重新校准。坚固的设计使用具有空间遗产的组件,因此适用于电信和量子密钥分布(QKD)领域中的空间应用。我们以冷却至253K的商业APD来表征我们的电路,并获得35NS的死时间,同时将后脉冲的概率保持在接近3%。我们还通过直接测试自定义的芯片尺度APD来证明电路的多功能性,这为自动晶片尺度测试和表征铺平了道路。

Most active quench circuits used for single-photon avalanche detectors are designed either with discrete components which lack the flexibility of dynamically changing the control parameters, or with custom ASICs which require a long development time and high cost. As an alternative, we present a reconfigurable and robust hybrid design implemented using a System-on-Chip (SoC), which integrates both an FPGA and a microcontroller. We take advantage of the FPGA's speed and configuration capabilities to vary the quench and reset parameters dynamically over a large range, thus allowing our circuit to operate with a wide variety of APDs without having to re-design the system. The microcontroller enables the remote adjustment of control parameters and re-calibration of APDs in the field. The ruggedized design uses components with space heritage, thus making it suitable for space-based applications in the fields of telecommunications and quantum key distribution (QKD). We characterize our circuit with a commercial APD cooled to 253K, and obtain a deadtime of 35ns while maintaining the after-pulsing probability at close to 3%. We also demonstrate versatility of the circuit by directly testing custom fabricated chip-scale APDs, which paves the way for automated wafer-scale testing and characterization.

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