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A scalable multi-photon coincidence detector based on superconducting nanowires

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arxiv 1711.10546 v1 pith:26X23OFE submitted 2017-11-28 physics.ins-det cond-mat.supr-conphysics.optics

A scalable multi-photon coincidence detector based on superconducting nanowires

classification physics.ins-det cond-mat.supr-conphysics.optics
keywords detectorcoincidencedetectionelementeventsmulti-photonreadoutscalable
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Coincidence detection of single photons is crucial in numerous quantum technologies and usually requires multiple time-resolved single-photon detectors. However, the electronic readout becomes a major challenge when the measurement basis scales to large numbers of spatial modes. Here, we address this problem by introducing a two-terminal coincidence detector that enables scalable readout of an array of detector segments based on superconducting nanowire microstrip transmission line. Exploiting timing logic, we demonstrate a 16-element detector that resolves all 136 possible single-photon and two-photon coincidence events. We further explore the pulse shapes of the detector output and resolve up to four-photon coincidence events in a 4-element device, giving the detector photon-number-resolving capability. This new detector architecture and operating scheme will be particularly useful for multi-photon coincidence detection in large-scale photonic integrated circuits.

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