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High-efficiency WSi superconducting nanowire single-photon detectors for quantum state engineering in the near infrared

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arxiv 1607.07459 v2 pith:RV3QCU6G submitted 2016-07-25 quant-ph physics.ins-detphysics.optics

High-efficiency WSi superconducting nanowire single-photon detectors for quantum state engineering in the near infrared

classification quant-ph physics.ins-detphysics.optics
keywords detectorshigh-efficiencysingle-photoncdotefficiencyengineeringheraldingnanowire
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We report on high-efficiency superconducting nanowire single-photon detectors based on amorphous WSi and optimized at 1064 nm. At an operating temperature of 1.8 K, we demonstrated a 93% system detection efficiency at this wavelength with a dark noise of a few counts per second. Combined with cavity-enhanced spontaneous parametric down-conversion, this fiber-coupled detector enabled us to generate narrowband single photons with a heralding efficiency greater than 90% and a high spectral brightness of $0.6\times10^4$ photons/(s$\cdot$mW$\cdot$MHz). Beyond single-photon generation at large rate, such high-efficiency detectors open the path to efficient multiple-photon heralding and complex quantum state engineering.

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