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Breakdown flash at telecom wavelengths in InGaAs avalanche photodiodes

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arxiv 1708.08650 v1 pith:FP7W7T4L submitted 2017-08-29 quant-ph physics.app-ph

Breakdown flash at telecom wavelengths in InGaAs avalanche photodiodes

classification quant-ph physics.app-ph
keywords wavelengthsavalanchebreakdownfluorescenceingaastelecomdistributionphoton
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Quantum key distribution (QKD) at telecom wavelengths (1260-1625nm) has the potential for fast deployment due to existing optical fibre infrastructure and mature telecom technologies. At these wavelengths, indium gallium arsenide (InGaAs) avalanche photodiode (APD) based detectors are the preferred choice for photon detection. Similar to their silicon counterparts used at shorter wavelengths, they exhibit fluorescence from recombination of electron-hole pairs generated in the avalanche breakdown process. This fluorescence may open side channels for attacks on QKD systems. Here, we characterize the breakdown fluorescence from two commercial InGaAs single photon counting modules, and find a spectral distribution between 1000nm and 1600nm. We also show that by spectral filtering, this side channel can be efficiently suppressed.

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