Scalable multiplexed detector system for high-rate telecom-band single-photon detection
G. Brida, Ivo Pietro Degiovanni, Fabrizio Piacentini, Valentina Schettini, Sergey V. Polyakov, Alan L. Migdall
Abstract
G. Brida, Ivo Pietro Degiovanni, Fabrizio Piacentini, Valentina Schettini, Sergey V. Polyakov, Alan L. Migdall
Abstract
We present an actively multiplexed photon-counting detection system at telecom wavelengths that overcomes the difficulties of photon-counting at high rates. We find that for gated detectors, the heretofore unconsidered deadtime associated with the detector gate is a critical parameter, that limits the overall scalability of the scheme to just a few detectors. We propose and implement a new scheme that overcomes this problem and restores full scalability that allows an order of magnitude improvement with systems with as few as 4 detectors. When using just two multiplexed detectors, our experimental results show a 5x improvement over a single detector and a greater than 2x improvement over multiplexed schemes that do not consider gate deadtime.
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We present an actively multiplexed photon-counting detection system at telecom wavelengths that overcomes the difficulties of photon-counting at high rates. We find that for gated detectors, the heretofore unconsidered deadtime associated with the detector gate is a critical parameter, that limits the overall scalability of the scheme to just a few detectors. We propose and implement a new scheme that overcomes this problem and restores full scalability that allows an order of magnitude improvement with systems with as few as 4 detectors. When using just two multiplexed detectors, our experimental results show a 5x improvement over a single detector and a greater than 2x improvement over multiplexed schemes that do not consider gate deadtime.
Key concepts: Detector, Multiplexing, Scalability, Physics, Photon, Photon counting, Optics, Wavelength