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Waveguide integrated superconducting single-photon detector for on-chip quantum and spectral photonic application
Journal of Physics Conference Series · 2017 · Vol. 917 · pp. 062032–062032
Vadim Kovalyuk✉(Moscow State Pedagogical University)Simone Ferrari(University of Münster)Oliver Kahl(University of Münster)A. Semenov(Moscow State Pedagogical University)Yu. V. Lobanov(Moscow State Pedagogical University)M. Shcherbatenko(Moscow Institute of Physics and Technology)A. Korneev(Moscow State Pedagogical University)Wolfram H. P. Pernice(University of Münster)Gregory Goltsman(Kazan E. K. Zavoisky Physical-Technical Institute)
Abstract
With use of the travelling-wave geometry approach, integrated superconductor-nanophotonic devices based on silicon nitride nanophotonic waveguide with a superconducting NbN-nanowire suited on top of the waveguide were fabricated. NbN-nanowire was operated as a single-photon counting detector with up to 92 % on-chip detection efficiency in the coherent mode, serving as a highly sensitive IR heterodyne mixer with spectral resolution (f/df) greater than 106 in C-band at 1550 nm wavelength.
Photonic and Optical DevicesAdvanced Optical Sensing TechnologiesQuantum Information and CryptographyNanophotonicsNanowirePhotonicsDetectorOptoelectronicsWaveguideHeterodyne (poetry)Heterodyne detectionPhotonPhoton counting
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