Comparative study of afterpulsing behavior and models in single photon counting avalanche photo diode detectors
arXiv:1701.03783 · doi:10.1038/s41598-018-23398-z
Abstract
Single-photon detectors, like Avalanche Photo Diodes (APDs), have a great importance in many fields like quantum key distribution, laser ranging, florescence microscopy, etc. Afterpulsing is a typical non ideal behavior of APDs, operated in Geiger mode, which adversely affects any application which measures the number or timing of detection events. Several conflicting studies have tried to model afterpulsing behavior and link it to fundamental semiconductor physics. Here we describe experiments we performed on at least 2 different detectors from 3 manufacturers, all commonly used in quantum optics setups. We report on the timing structure of the counts. By fitting different models to these data, we found statistically significant differences between the detectors used. Furthermore, we report on the presence of high order afterpulses which are not accounted for in any of the standard models of afterpulse behavior. This might have significant implication e.g. in quantum key distribution systems, as the modeling of the devices in use will have to be part of the security analysis for some systems. Significant differences between manufacturers and even between seemingly identical detectors of the same make and batch suggest that every individual detector needs to be calibrated. We describe a reliable procedure to perform such a calibration and present our findings on three different commercial products.
11 pages, 4 figures, 1 table, The first two authors contributed equally. Added more supporting evidence. Added table showing the conflict between afterpulsing models
References in corpus (8)
- The First VERITAS Telescope
- High speed single photon detection in the near-infrared
- Risk analysis of Trojan-horse attacks on practical quantum key distribution systems
- Non-Markovian property of afterpulsing effect in single-photon avalanche detector
- Real-time characterization of gated-mode single-photon detectors
- An advanced active quenching circuit for ultra-fast quantum cryptography
- Security of quantum key distribution with imperfect devices
- Non-Markov property of afterpulsing effect in single-photon avalanche detector
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