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Goltsman G. Quantum-photonic integrated circuits. In: Proc. IWQO.; 2019. p. 22–3.
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Bandurin D, Svintsov D, Gayduchenko I, Xu S, Principi A, Moskotin M, et al. Resonant terahertz photoresponse and superlattice plasmons in graphene field-effect transistors [abstract]. In: APS March Meeting.; 2019. F14.015.
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Korneeva Y P, Vodolazov D Y, Semenov AV, Florya IN, Simonov N, Baeva E, et al. Optical single photon detection in micron-scaled NbN bridges [Internet].; 2018 [cited 2024 Jul 4].arXiv:1802.02881v1 [cond-mat.supr-con]. Available from: https://arxiv.org/abs/1802.02881v1
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Tretyakov I, Kaurova N, Voronov BM, Goltsman GN. About effect of the temperature operating conditions on the noise temperature and noise bandwidth of the terahertz range NbN hot-electron bolometers [abstract]. In: Proc. 29th Int. Symp. Space Terahertz Technol.; 2018. 113.
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Sych D, Shcherbatenko M, Elezov M, Goltsman GN. Towards the improvement of the heterodyne receiver sensitivity beyond the quantum noise limit. In: Proc. 29th Int. Symp. Space Terahertz Technol.; 2018. p. 245–7.
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Goltsman G. Superconducting thin film as infrared heterodyne and direct detectors. In: 16th ISEC.; 2017. p. 1–3.
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Korneev A, Semenov A, Vodolazov D, Gol’tsman GN, Sobolewski R. Physics and operation of superconducting single-photon devices. In: Wördenweber R, Moshchalkov V, Bending S, Tafuri F, editors. Superconductors at the Nanoscale. De Gruyter; 2017. p. 279–308.
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Kahl O, Ferrari S, Kovalyuk V, Vetter A, Lewes-Malandrakis G, Nebel C, et al. Spectrally resolved single-photon imaging with hybrid superconducting – nanophotonic circuits [Internet].; 2016 [cited 2024 Jul 4].arXiv:1609.07857v1 [physics.ins-det]. Available from: https://arxiv.org/abs/1609.07857v1
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Arutyunov KY, Ramos-Álvarez A, Semenov AV, Korneeva YP, An PP, Korneev AA, et al. Quasi-1-dimensional superconductivity in highly disordered NbN nanowires [Internet].; 2016 [cited 2024 Jul 4].arXiv:1602.07932v1 [cond-mat.supr-con]. Available from: https://arxiv.org/abs/1602.07932v1
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Sidorova M, Semenov A, Korneev A, Chulkova G, Korneeva Y, Mikhailov M, et al. Electron-phonon relaxation time in ultrathin tungsten silicon film [Internet].; 2018 [cited 2024 Jul 4].arXiv:1607.07321v1 [physics.ins-det]. Available from: https://arxiv.org/abs/1607.07321v1
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