Systematic afterpulsing-estimation algorithms for gated avalanche photodiodes
arXiv:1608.06675 · doi:10.1364/AO.55.007252
Abstract
We present a method designed to efficiently extract optical signals from InGaAs avalanche photodiodes (APDs) operated in gated mode. In particular, our method permits an estimation of the fraction of counts which actually results from the signal being measured, as opposed to being produced by noise mechanisms, specifically by afterpulsing. Our method in principle allows the use of InGaAs APDs at high detection efficiencies, with the full operation bandwidth, either with or without resorting to the application of a dead time. As we show below, our method can be used in configurations where afterpulsing exceeds the genuine signal by orders of magnitude, even near saturation. The algorithms which we have developed are suitable to be used either in real-time processing of raw detection probabilities or in post-processing applications, after a calibration step has been performed. The algorithms which we propose here can complement technologies designed for the reduction of afterpulsing.
15 pages, 12 figures, to be published in Applied Optics
References in corpus (12)
- Advances in InGaAs/InP single-photon detector systems for quantum communication
- High speed single photon detection in the near-infrared
- Trojan-horse attacks threaten the security of practical quantum cryptography
- After-gate attack on a quantum cryptosystem
- GHz-gated InGaAs/InP single-photon detector with detection efficiency exceeding 55% at 1550 nm
- Comprehensive Characterization of InGaAs/InP Avalanche Photodiodes at 1550 nm with an Active Quenching ASIC
- Real-time monitoring of single-photon detectors against eavesdropping in quantum key distribution systems
- Real-time characterization of gated-mode single-photon detectors
- Method for characterizing single photon detectors in saturation regime by cw laser
- Afterpulsing in Silicon Photomultipliers: Impact on the Photodetectors Characterization
- Commercially available Geiger mode single-photon avalanche photodiode with a very low afterpulsing probability
- Afterpulsing studies of low noise InGaAs/InP single-photon negative feedback avalanche diodes