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Sergeev, A.; Karasik, B. S.; Ptitsina, N. G.; Chulkova, G. M.; Il'in, K. S.; Gershenzon, E. M. Electron–phonon interaction in disordered conductors 1999 Phys. Rev. B Condens. Matter 263-264 190-192 details   doi
Sergeev, A.; Mitin, V. Electron-phonon interaction in disordered conductors: Static and vibrating scattering potentials 2000 Phys. Rev. B. 61 6041-6047 details   doi
Sergeev, A.; Semenov, A.; Trifonov, V.; Karasik, B.; Gol'tsman, G.; Gershenzon, E. Heat transfer in YBaCuO thin film/sapphire substrate system 1994 J. Supercond. 7 341-344 details   doi
Shangina, E. L.; Smirnov, K. V.; Morozov, D. V.; Kovalyuk, V. V.; Goltsman, G. N.; Verevkin, A. A.; Toropov, A. I.; Mauskopf, P. Concentration dependence of energy relaxation time in AlGaAs/GaAs heterojunctions: direct measurements 2011 Semicond. Sci. Technol. 26 025013 details   doi
Shangina, E. L.; Smirnov, K. V.; Morozov, D. V.; Kovalyuk, V. V.; Gol’tsman, G. N.; Verevkin, A. A.; Toropov, A. I. Frequency bandwidth and conversion loss of a semiconductor heterodyne receiver with phonon cooling of two-dimensional electrons 2010 Semicond. 44 1427-1429 details   doi
Shangina, E. L.; Smirnov, K. V.; Morozov, D. V.; Kovalyuk, V. V.; Gol’tsman, G. N.; Verevkin, A. A.; Toropov, A. I. Concentration dependence of the intermediate frequency bandwidth of submillimeter heterodyne AlGaAs/GaAs nanostructures 2010 Bull. Russ. Acad. Sci. Phys. 74 100-102 details   doi
Shcherbatenko, M. L.; Elezov, M. S.; Goltsman, G. N.; Sych, D. V. Sub-shot-noise-limited fiber-optic quantum receiver 2020 Phys. Rev. A 101 032306 (1 to 5) details   doi
Shcherbatenko, M.; Elezov, M.; Manova, N.; Sedykh, K.; Korneev, A.; Korneeva, Y.; Dryazgov, M.; Simonov, N.; Feimov, A.; Goltsman, G.; Sych, D. Single-pixel camera with a large-area microstrip superconducting single photon detector on a multimode fiber 2021 Appl. Phys. Lett. 118 181103 details   doi
Shcherbatenko, M.; Elezov, M.; Sych, D.; Goltsman, G. N. Optimal fiber optic scheme for sub-SQL quantum receiver realization 2020 J. Phys.: Conf. Ser. 1695 012140 details   doi
Shcherbatenko, M.; Lobanov, Y.; Kovalyuk, V.; Korneev, A.; Gol'tsman, G. N. Photon counting detector as a mixer with picowatt local oscillator power requirement 2016 Proc. 27th Int. Symp. Space Terahertz Technol. 110 details   url
Shcherbatenko, M.; Lobanov, Y.; Semenov, A.; Kovalyuk, V.; Korneev, A.; Ozhegov, R.; Kaurova, N.; Voronov, B.; Goltsman, G. Coherent detection of weak signals with superconducting nanowire single photon detector at the telecommunication wavelength 2017 Proc. SPIE 10229 0G (1 to 12) details   doi
Shcherbatenko, M.; Lobanov, Y.; Semenov, A.; Kovalyuk, V.; Korneev, A.; Ozhegov, R.; Kazakov, A.; Voronov, B.M.; Goltsman, G.N. Potential of a superconducting photon counter for heterodyne detection at the telecommunication wavelength 2016 Opt. Express 24 30474-30484 details   doi
Shcherbatenko, M.; Tretyakov, I.; Lobanov, Yu.; Maslennikov, S. N.; Kaurova, N.; Finkel, M.; Voronov, B.; Goltsman, G.; Klapwijk, T. M. Nonequilibrium interpretation of DC properties of NbN superconducting hot electron bolometers 2016 Appl. Phys. Lett. 109 132602 details   doi
Shcherbatenko, Michael; Lobanov, Yury; Benderov, Oleg; Shurakov, Alexander; Ignatov, Anton; Titova, Nadezhda; Finkel, Matvey; Maslennikov, Sergey; Kaurova, Natalya; Voronov, Boris M.; Rodin, Alexander; Klapwijk, Teunis M.; Gol'tsman, Gregory N. Antenna-coupled 30 THz hot electron bolometer mixers 2015 Proc. 26th Int. Symp. Space Terahertz Technol. 27 details   url
Shcherbatenko, Michael; Lobanov, Yury; Finkel, Matvey; Maslennikov, Sergey; Pentin, Ivan; Semenov, Alexander; Titova, Nadezhda; Kaurova, Natalya; Voronov, Boris M.; Rodin, Alexander; Klapwijk, Teunis M.; Gol’tsman, Gregory N. Development of a 30 THz heterodyne receiver based on a hot-electron-bolometer mixer 2014 Proc. 25th Int. Symp. Space Terahertz Technol. 122 details   url
Shcheslavskiy, V.; Morozov, P.; Divochiy, A.; Vakhtomin, Y.; Smirnov, K.; Becker, W. Erratum: “Ultrafast time measurements by time-correlated single photon counting coupled with superconducting single photon detector” [Rev. Sci. Instrum. 87, 053117 (2016)] 2016 Rev. Sci. Instrum. 87 069901 details   doi
Shcheslavskiy, V.; Morozov, P.; Divochiy, A.; Vakhtomin, Yu.; Smirnov, K.; Becker, W. Ultrafast time measurements by time-correlated single photon counting coupled with superconducting single photon detector 2016 Rev. Sci. Instrum. 87 053117 (1 to 5) details   doi
Shein, K. V.; Zarudneva, A. A.; Emel’yanova, V. O.; Logunova, M. A.; Chichkov, V. I.; Sobolev, A.S.; Zav’yalov, V. V.; Lehtinen, J. S.; Smirnov, E. O.; Korneeva, Y. P.; Korneev, A. A.; Arutyunov, K. Y. Superconducting microstructures with high impedance 2020 Phys. Solid State 62 1539-1542 details   doi
Shurakov, A.; Lobanov, Y.; Goltsman, G. Superconducting hot-electron bolometer: from the discovery of hot-electron phenomena to practical applications 2015 Supercond. Sci. Technol. 29 023001 details   doi
Shurakov, A.; Mikhailov, D.; Belikov, I.; Kaurova, N.; Zilberley, T.; Prikhodko, A.; Voronov, B.; Vasil’evskii, I.; Goltsman, G. Planar Schottky diode with a Γ-shaped anode suspended bridge 2020 J. Phys.: Conf. Ser. 1695 012154 details   doi
Shurakov, A.; Mikhalev, P.; Mikhailov, D.; Mityashkin, V.; Tretyakov, I.; Kardakova, A.; Belikov, I.; Kaurova, N.; Voronov, B.; Vasil’evskii, I.; Gol’tsman, G. Ti/Au/n-GaAs planar Schottky diode with a moderately Si-doped matching sublayer 2018 Microelectronic Engineering 195 26-31 details   doi
Shurakov, A.; Prikhodko, A.; Mikhailov, D.; Belikov, I.; Kaurova, N.; Voronov, B.; Goltsman, G. Efficiency of a microwave reflectometry for readout of a THz multipixel Schottky diode direct detector 2020 J. Phys.: Conf. Ser. 1695 012156 details   doi
Shurakov, A.; Seliverstov, S.; Kaurova, N.; Finkel, M.; Voronov, B.; Goltsman, G. Input bandwidth of hot electron bolometer with spiral antenna 2012 IEEE Trans. THz Sci. Technol. 2 400-405 details   doi
Shurakov, A.; Tong, C.-Y. E.; Blundell, R.; Kaurova, N.; Voronov, B.; Gol'tsman, G. Microwave stabilization of a HEB mixer in a pulse-tube cryocooler 2013 IEEE Trans. Appl. Supercond. 23 1501504-1501504 details   doi
Shurakov, A.; Tong, Cheuk-yu E.; Grimes, P.; Blundell, R.; Golt'sman, G. A microwave reflection readout scheme for hot electron bolometric direct detector 2015 IEEE Trans. THz Sci. Technol. 5 81-84 details   openurl
Shurakov, Alexander; Maslennikov, Sergey; Tong, Cheuk-yu E.; Gol’tsman, Gregory Performance of an HEB direct detector utilizing a microwave reflection readout scheme 2015 Proc. 26th Int. Symp. Space Terahertz Technol. 36 details   url
Shurakov, Alexander; Tong, Cheuk-yu E.; Blundell, Raymond; Gol’tsman, Gregory A microwave pumped HEB direct detector using a homodyne readout scheme 2014 Proc. 25th Int. Symp. Space Terahertz Technol. 129 details   url
Shurakov, Alexander; Tong, Edward; Blundell, Raymond; Gol'tsman, Gregory Microwave stabilization of HEB mixer by a microchip controller 2012 IEEE MTT-S international microwave symposium digest 1-3 details   openurl
Sidorova, M. V.; Kozorezov, A. G.; Semenov, A. V.; Korneev, A. A.; Chulkova, G. M.; Korneeva, Y. P.; Mikhailov, M. Y.; Devizenko, A. Y.; Goltsman, G. N. Non-bolometric bottleneck in electron-phonon relaxation in ultra-thin WSi film 2018 arXiv details   url
Sidorova, M. V.; Kozorezov, A. G.; Semenov, A. V.; Korneeva, Y. P.; Mikhailov, M. Y.; Devizenko, A. Y.; Korneev, A. A.; Chulkova, G. M.; Goltsman, G. N. Nonbolometric bottleneck in electron-phonon relaxation in ultrathin WSi films 2018 Phys. Rev. B 97 184512 (1 to 13) details   doi
Sidorova, M.; Semenov, A.; Hübers, H.-W.; Kuzmin, A.; Doerner, S.; Ilin, K.; Siegel, M.; Charaev, I.; Vodolazov, D. Timing jitter in photon detection by straight superconducting nanowires: Effect of magnetic field and photon flux 2018 Phys. Rev. B 98 134504 (1 to 14) details   doi
Sidorova, M.; Semenov, A.; Korneev, A.; Chulkova, G.; Korneeva, Y.; Mikhailov, M.; Devizenko, A.; Kozorezov, A.; Goltsman, G. Electron-phonon relaxation time in ultrathin tungsten silicon film 2018 arXiv details   url
Sidorova, M.; Semenov, Alexej D.; Hübers, H.-W.; Ilin, K.; Siegel, M.; Charaev, I.; Moshkova, M.; Kaurova, N.; Goltsman, G. N.; Zhang, X.; Schilling, A. Electron energy relaxation in disordered superconducting NbN films 2020 Phys. Rev. B 102 054501 (1 to 15) details   doi
Sidorova, Maria V.; Divochiy, Alexander V.; Vakhtomin, Yury B.; Smirnov, Konstantin V. Ultrafast superconducting single-photon detector with a reduced active area coupled to a tapered lensed single-mode fiber 2015 J. Nanophoton. 9 093051 details   doi
Sidorova, Maria V.; Divochiy, Alexander; Vakhtomin, Yury B.; Smirnov, Konstantin V. Ultrafast superconducting single-photon detector with reduced-size active area coupled to a tapered lensed single-mode fiber 2015 Proc. SPIE 9504 950408 (1 to 9) details   openurl
Simonov, N. O.; Korneeva, Y. P.; Korneev, A. A.; Goltsman, G. N. Enhance of the superconducting properties of the NbN/Au bilayer bridges 2020 J. Phys.: Conf. Ser. 1695 012132 (1 to 4) details   doi
Slysz, W.; Wegrzecki, M.; Bar, J.; Grabiec, P.; Gol'tsman, G. N.; Verevkin, M.; Sobolewski, R. NbN superconducting single-photon detectors coupled with a communication fiber 2004 INIS 37 1-2 details   url
Slysz, W.; Wegrzecki, M.; Bar, J.; Grabiec, P.; Górska, M.; Latta, C.; Zwiller, V.; Pearlman, A.; Cross, A.; Korneev, A.; Kouminov, P.; Smirnov, K.; Voronov, B.; Gol’tsman, G.; Verevkin, A.; Currie, M.; Sobolewski, R. Fiber-coupled quantum-communications receiver based on two NbN superconducting single-photon detectors 2005 Proc. SPIE 5957 59571K (1 to 10) details   doi
Slysz, W.; Wegrzecki, M.; Bar, J.; Grabiec, P.; Gorska, M.; Rieger, E.; Dorenbos, P.; Zwiller, V.; Milostnaya, I.; Minaeva, O.; Antipov, A.; Okunev, O.; Korneev, A.; Smirnov, K.; Voronov, B.; Kaurova, N.; Gol’tsman, G.N.; Kitaygorsky, J.; Pan, D.; Pearlman, A.; Cross, A.; Komissarov, I.; Sobolewski, R. Fiber-coupled NbN superconducting single-photon detectors for quantum correlation measurements 2007 Proc. SPIE 6583 65830J (1 to 11) details   doi
Slysz, W.; Wegrzecki, M.; Papis, E.; Gol'tsman, G. N.; Verevkin, A.; Sobolewski, R. A method of optimization of the NbN superconducting single-photon detector 2004 INIS 36 1-2 details   url
Smirnov, A. V.; Baryshev, A. M.; de Bernardis, P.; Vdovin, V. F.; Gol'tsman, G. N.; Kardashev, N. S.; Kuz'min, L. S.; Koshelets, V. P.; Vystavkin, A. N.; Lobanov, Yu. V.; Ryabchun, S. A.; Finkel, M. I.; Khokhlov, D. R. The current stage of development of the receiving complex of the millimetron space observatory 2012 Radiophys. Quant. Electron. 54 557-568 details   doi
Smirnov, A. V.; Karmantsov, M. S.; Smirnov, K. V.; Vakhtomin, Y. B.; Masterov, D. V.; Tarkhov, M. A.; Pavlov, S. A.; Parafin, A. E. Terahertz response of thin-film YBCO bolometers 2012 Tech. Phys. 57 1716-1719 details   doi
Smirnov, A. V.; Larionov, P. A.; Finkel, M. I.; Maslennikov, S. N.; Voronov, B. M.; Gol'tsman, G. N. NbZr films for THz phonon-cooled HEB mixers 2008 Proc. 19th Int. Symp. Space Terahertz Technol. 44-47 details   url
Smirnov, E.; Golikov, A.; Zolotov, P.; Kovalyuk, V.; Lobino, M.; Voronov, B.; Korneev, A.; Goltsman, G. Superconducting nanowire single-photon detector on lithium niobate 2018 J. Phys.: Conf. Ser. 1124 051025 details   doi
Smirnov, K. V.; Divochiy, A. V.; Vakhtomin, Y. B.; Sidorova, M. V.; Karpova, U. V.; Morozov, P. V.; Seleznev, V. A.; Zotova, A. N.; Vodolazov, D. Y. Rise time of voltage pulses in NbN superconducting single photon detectors 2016 Appl. Phys. Lett. 109 052601 details   doi
Smirnov, K. V.; Ptitsina, N. G.; Vakhtomin, Y. B.; Verevkin, A. A.; Gol’tsman, G. N.; Gershenzon, E. M. Energy relaxation of two-dimensional electrons in the quantum Hall effect regime 2000 JETP Lett. 71 31-34 details   doi
Smirnov, K. V.; Vachtomin, Y. B.; Ozhegov, R. V.; Pentin, I. V.; Slivinskaya, E. V.; Korneev, A. A.; Goltsman, G. N. Fiber coupled single photon receivers based on superconducting detectors for quantum communications and quantum cryptography 2008 Proc. SPIE 7138 713827 (1 to 6) details   doi
Smirnov, K. V.; Vachtomin, Yu. B.; Antipov, S. V.; Maslennikov, S. N.; Kaurova, N. S.; Drakinsky, V. N.; Voronov, B. M.; Gol'tsman, G. N.; Semenov, A. D.; Richter, H.; Hubers, H.-W. Noise and gain performance of spiral antenna coupled HEB mixers at 0.7 THz and 2.5 THz 2003 Proc. 14th Int. Symp. Space Terahertz Technol. 405-412 details   url
Smirnov, K. V.; Vakhtomin, Yu. B.; Divochiy, A. V.; Ozhegov, R. V.; Pentin, I. V.; Gol'tsman, G. N. Infrared and terahertz detectors on basis of superconducting nanostructures 2010 Microwave and Telecom. Technol. (CriMiCo), 20th Int. Crimean Conf. 823-824 details   doi
Smirnov, K. V.; Vakhtomin, Yu. B.; Divochiy, A. V.; Ozhegov, R. V.; Pentin, I. V.; Slivinskaya, E. V.; Tarkhov, M. A.; Gol’tsman, G. N. Single-photon detectors for the visible and infrared parts of the spectrum based on NbN nanostructures 2009 Proc. Progress In Electromagnetics Research Symp. 863-864 details   url
Smirnov, K.; Divochiy, A.; Vakhtomin, Y.; Morozov, P.; Zolotov, P.; Antipov, A.; Seleznev, V. NbN single-photon detectors with saturated dependence of quantum efficiency 2018 Supercond. Sci. Technol. 31 035011 (1 to 8) details   doi
Smirnov, K.; Korneev, A.; Minaeva, O.; Divochij, A.; Rubtsova, I.; Antipov, A.; Ryabchun, S.; Okunev, O.; Milostnaya, I.; Chulkova, G.; Voronov, B.; Kaurova, N.; Seleznev, V.; Korotetskaya, Y.; Gol’tsman, G. Superconducting single-photon detector for near- and middle IR wavelength range 2006 Proc. 16th Int. Crimean Microwave and Telecommunication Technology 2 684-685 details   doi
Smirnov, K.; Korneev, A.; Minaeva, O.; Divochiy, A.; Tarkhov, M.; Ryabchun, S.; Seleznev, V.; Kaurova, N.; Voronov, B.; Gol'tsman, G.; Polonsky, S. Ultrathin NbN film superconducting single-photon detector array 2007 J. Phys.: Conf. Ser. 61 1081-1085 details   doi
Smirnov, K.; Moshkova, M.; Antipov, A.; Morozov, P.; Vakhtomin, Y. The cascade switching of the photon number resolving superconducting single-photon detectors 2021 IEEE Trans. Appl. Supercond. 31 1-4 details   doi
Smirnov, K.; Vachtomin, Y.; Divochiy, A.; Antipov, A.; Goltsman, G. The limitation of noise equivalent power by background radiation for infrared superconducting single photon detectors coupled to standard single mode optical fibers 2015 Rus. J. Radio Electron. details   url
Smirnov, Konstantin; Vachtomin, Yury; Divochiy, Alexander; Antipov, Andrey; Goltsman, Gregory Dependence of dark count rates in superconducting single photon detectors on the filtering effect of standard single mode optical fibers 2015 Appl. Phys. Express 8 022501 (1 to 4) details   doi
Sobolewski, R.; Verevkin, A.; Gol'tsman, G.N.; Lipatov, A.; Wilsher, K. Ultrafast superconducting single-photon optical detectors and their applications 2003 IEEE Trans. Appl. Supercond. 13 1151-1157 details   doi
Sobolewski, R.; Verevkin, A.; Gol’tsman, G. N. Superconducting optical single-photon detectors 2004 CLEO/QELS IThD1 details   doi
Sobolewski, R.; Zhang, J.; Slysz, W.; Pearlman, A.; Verevkin, A.; Lipatov, A.; Okunev, O.; Chulkova, G.; Korneev, A.; Smirnov, K.; Kouminov, P.; Voronov, B.; Kaurova, N.; Drakinsky, V.; Goltsman, G. N. Ultrafast superconducting single-photon optical detectors 2003 Proc. SPIE 5123 1-11 details   doi
Sobolewski, Roman; Xu, Ying; Zheng, Xuemei; Williams, Carlo; Zhang, Jin; Verevkin, Aleksandr; Chulkova, Galina; Korneev, Alexander; Lipatov, Andrey; Okunev, Oleg; Smirnov, Konstantin; Gol'tsman, Gregory N. Spectral sensitivity of the NbN single-photon superconducting detector 2002 IEICE Trans. Electron. E85-C 797-802 details   url
Somani, S.; Kasapi, S.; Wilsher, K.; Lo, W.; Sobolewski, R.; Gol’tsman, G. New photon detector for device analysis: Superconducting single-photon detector based on a hot electron effect 2001 J. Vac. Sci. Technol. B 19 2766-2769 details   doi
Svechnikov, S. I.; Antipov, S. V.; Vakhtomin, Y. B.; Goltsman, G. N.; Gershenzon, E. M.; Cherednichenko, S. I.; Kroug, M.; Kollberg, E. Conversion and noise bandwidths of terahertz NbN hot-electron bolometer mixers 2001 Physics of Vibrations 9 205-210 details   url
Svechnikov, S. I.; Finkel, M. I.; Maslennikov, S. N.; Vachtomin, Y. B.; Smirnov, K. V.; Seleznev, V. A.; Korotetskaya, Y. P.; Kaurova, N. S.; Voronov, B. M.; Gol’tsman, G. N. Superconducting hot electron bolometer mixer for middle IR range 2006 Proc. 16th Int. Crimean Microwave and Telecommunication Technology 2 686-687 details   doi
Svechnikov, S. I.; Okunev, O. V.; Yagoubov, P. A.; Gol'tsman, G. N.; Voronov, B. M.; Cherednichenko, S. I.; Gershenzon, E. M.; Gerecht, E.; Musante, C. F.; Wang, Z.; Yngvesson, K. S. 2.5 THz NbN hot electron mixer with integrated tapered slot antenna 1997 IEEE Trans. Appl. Supercond. 7 3548-3551 details   doi
Svechnikov, S.; Gol'tsman, G.; Voronov, B.; Yagoubov, P.; Cherednichenko, S.; Gershenzon, E.; Belitsky, V.; Ekstrom, H.; Kollberg, E.; Semenov, A.; Gousev, Y.; Renk, K. Spiral antenna NbN hot-electron bolometer mixer at submm frequencies 1997 IEEE Trans. Appl. Supercond. 7 3395-3398 details   doi
Svechnikov, S.; Verevkin, A.; Voronov, B.; Menschikov, E.; Gershenzon, E.; Gol'tsman, G. Quasioptical phonon-cooled NbN hot electron bolometer mixers at 0.5-1.1 THz 1998 Proc. 9th Int. Symp. Space Terahertz Technol. 45-51 details   url
Sych, Denis; Shcherbatenko, Michael; Elezov, Michael; Goltsman, Gregory N. Towards the improvement of the heterodyne receiver sensitivity beyond the quantum noise limit 2018 Proc. 29th Int. Symp. Space Terahertz Technol. 245-247 details   openurl
Słysz, W.; Węgrzecki, M.; Bar, J.; Grabiec, P.; Gol'tsman, G. N.; Verevkin, A.; Sobolewski, R. NbN superconducting single-photon detector coupled with a communication fiber 2005 Elektronika : konstrukcje, technologie, zastosowania 46 51-52 details   url
Słysz, W.; Węgrzecki, M.; Bar, J.; Grabiec, P.; Górska, M.; Zwiller, V.; Latta, C.; Bohi, P.; Milostnaya, I.; Minaeva, O.; Antipov, A.; Okunev, O.; Korneev, A.; Smirnov, K.; Voronov, B.; Kaurova, N.; Gol’tsman, G.; Pearlman, A.; Cross, A.; Komissarov, I.; Verevkin, A.; Sobolewski, R. Fiber-coupled single-photon detectors based on NbN superconducting nanostructures for practical quantum cryptography and photon-correlation studies 2006 Appl. Phys. Lett. 88 261113 (1 to 3) details   doi
Słysz, W.; Wegrzecki, M.; Bar, J.; Grabiec, P.; Górska, M.; Zwiller, V.; Latta, C.; Böhi, P.; Pearlman, A.J.; Cross, A.S.; Pan, D.; Kitaygorsky, J.; Komissarov, I.; Verevkin, A.; Milostnaya, I.; Korneev, A.; Minayeva, O.; Chulkova, G.; Smirnov, K.; Voronov, B.; Gol’tsman, G.N.; Sobolewski, R. Fibre-coupled, single photon detector based on NbN superconducting nanostructures for quantum communications 2007 J. Modern Opt. 54 315-326 details   doi
Tarkhov, M.; Claudon, J.; Poizat, J. Ph.; Korneev, A.; Divochiy, A.; Minaeva, O.; Seleznev, V.; Kaurova, N.; Voronov, B.; Semenov, A. V.; Gol'tsman, G. Ultrafast reset time of superconducting single photon detectors 2008 Appl. Phys. Lett. 92 241112 (1 to 3) details   doi
Tarkhov, M.; Morozov, D.; Mauskopf, P.; Seleznev, V.; Korneev, A.; Kaurova, N.; Rubtsova, I.; Minaeva, O.; Voronov, B.; Goltsman, G. Single photon counting detector for THz radioastronomy 2006 Proc. 17th Int. Symp. Space Terahertz Technol. 119-122 details   url
Tikhonov, V. V.; Boyarskii, D. A.; Polyakova, O. N.; Dzardanov, A. L.; Goltsman, G. N. Radiophysical and dielectric properties of ore minerals in 12--145 GHz frequency range 2010 PIER B 25 349-367 details   doi
Tikhonov, V. V.; Polyakova, O. N.; Gol’tsman, G. N.; Dzardanov, A. L.; Boyarskiy, D. A. Determination of dielectric properties of ore minerals in the microwave band 2008 Radiophys. Quant. Electron. 51 966-974 details   doi
Titova, N. A.; Baeva, E. M.; Kardakova, A. I.; Goltsman, G. N. Fabrication of NbN/SiNx:H/SiO2 membrane structures for study of heat conduction at low temperatures 2020 J. Phys.: Conf. Ser. 1695 012190 details   doi
Titova, N.; Gayduchenko, I. A.; Moskotin, M. V.; Fedorov, G. F.; Goltsman, G. N. Carbon nanotube based terahertz radiation detectors 2019 J. Phys.: Conf. Ser. 1410 012208 (1 to 5) details   doi
Titova, N.; Kardakova, A. I.; Tovpeko, N.; Ryabchun, S.; Mandal, S.; Morozov, D.; Klemencic, G. M.; Giblin, S. R.; Williams, O. A.; Goltsman, G. N.; Klapwijk, T. M. Slow electron–phonon cooling in superconducting diamond films 2017 IEEE Trans. Appl. Supercond. 27 1-4 details   doi
Titova, N; Kardakova, A.; Tovpeko, N; Ryabchun, S.; Mandal, S.; Morozov, D.; Klemencic, G. M.; Giblin, S.R.; Williams, O. A.; Goltsman, G. N. Superconducting diamond films as perspective material for direct THz detectors 2017 Proc. 28th Int. Symp. Space Terahertz Technol. 82 details   openurl
Tiulina, V.; Iomdina, E.; Goltsman, G.; Seliverstov, S.; Sianosyan, A.; Teplyakova, K.; Rusova, A.; Zaitsev, S.; Zernii, E.; Senin, I. UVB promotes the initiation of uveitic inflammatory and changes in thehydration of the cornea in vivo 2019 FEBS Open Bio 9 79 details   doi
Tong, C. E.; Blundell, R.; Papa, D. C.; Smith, M.; Kawamura, J.; Gol'tsman, G.; Gershenzon, E.; Voronov, B. An all solid-state superconducting heterodyne receiver at terahertz frequencies 1999 IEEE Microw. Guid. Wave Lett. 9 366-368 details   doi
Tong, C. Edward; Trifonov, Andrey; Blundell, Raymond; Shurakov, Alexander; Gol’tsman, Gregory A digital terahertz power meter based on an NbN thin film 2014 Proc. 25th Int. Symp. Space Terahertz Technol. 170 details   url
Tong, C.-Y. E.; Meledin, D.; Loudkov, D.; Blundell, R.; Erickson, N.; Kawamura, J.; Mehdi, I.; Gol’tsman, G. A 1.5 THz Hot-Electron Bolometer mixer operated by a planar diode based local oscillator 2003 IEEE MTT-S Int. Microwave Symp. Digest 2 751-754 details   doi
Tong, C.-Y. E.; Trifonov, A.; Shurakov, A.; Blundell, R.; Gol’tsman, G. A microwave-operated hot-electron-bolometric power detector for terahertz radiation 2015 IEEE Trans. Appl. Supercond. 25 2300604 (1 to 4) details   doi
Tong, C.-Y. Edward; Kawamura, Jonathan; Todd, R. Hunter; Papa, D. Cosmo; Blundell, Raymond.; Smith, Michael; Patt, Ferdinand; Gol'tsman, Gregory; Gershenzon, Eugene Successful operation of a 1 THz NbN hot-electron bolometer receiver 2000 Proc. 11th Int. Symp. Space Terahertz Technol. 49-59 details   url
Tong, C.-Y. Edward; Meledin, Denis; Blundell, Raymond; Erickson, Neal; Kawamura, Jonathan; Mehdi, Imran; Gol'tsman, Gregory A 1.5 THz hot-electron bolometer mixer operated by a planar diode-based local oscillator 2003 Proc. 14th Int. Symp. Space Terahertz Technol. 286 details   url
Tong, C.-Y.E.; Meledin, D.V.; Marrone, D.P.; Paine, S.N.; Gibson, H.; Blundell, R. Near field vector beam measurements at 1 THz 2003 IEEE Microw. Compon. Lett. 13 235-237 details   doi
Tovpeko, N. A.; Trifonov, A. V.; Semenov, A. V.; Antipov, S. V.; Kaurova, N. S.; Titova, N. A.; Goltsman, G. N. Bandwidth performance of a THz normal metal TiN bolometer-mixer 2019 Proc. 30th Int. Symp. Space Terahertz Technol. 102-103 details   url
Tret'yakov, I. V.; Kaurova, N. S.; Voronov, B. M.; Anfert'ev, V. A.; Revin, L. S.; Vaks, V. L.; Gol'tsman, G. N. The influence of the diffusion cooling on the noise band of the superconductor NbN hot-electron bolometer operating in the terahertz range 2016 Tech. Phys. Lett. 42 563-566 details   doi
Tretyakov, I. V.; Anfertyev, V. A.; Revin, L. S.; Kaurova, N. S.; Voronov, B. M.; Vaks, V. L.; Goltsman, G. N. Sensitivity and resolution of a heterodyne receiver based on the NbN HEB mixer with a quantum-cascade laser as a local oscillator 2018 Radiophys. Quant. Electron. 60 988-992 details   doi
Tretyakov, I. V.; Finkel, M. I.; Ryabchun, S. A.; Kardakova, A. I.; Seliverstov, S. V.; Petrenko, D. V.; Goltsman, G. N. Hot-electron bolometer mixers with in situ contacts 2014 Radiophys. Quant. Electron. 56 591-598 details   doi
Tretyakov, I. V.; Ryabchun, S. A.; Maslennikov, S. N.; Finkel, M. I.; Kaurova, N. S.; Seleznev, V. A.; Voronov, B. M.; Gol'tsman, G.N. NbN HEB mixer: fabrication, noise temperature reduction and characterization 2008 Proc. Basic problems of superconductivity details   openurl
Tretyakov, I.; Kaurova, N.; Raybchun, S.; Goltsman, G. N.; Silaev, A. A. Technology for NbN HEB based multipixel matrix of THz range 2018 EPJ Web Conf. 195 05011 details   doi
Tretyakov, I.; Maslennikov, S.; Semenov, A.; Safir, O.; Finkel, M.; Ryabchun, S.; Kaurova, N.; Voronov, B.; Goltsman, G.; Klapwijk, T. M. Impact of operating conditions on noise and gain bandwidth of NbN HEB mixers 2015 Proc. 26th Int. Symp. Space Terahertz Technol. 39 details   url
Tretyakov, I.; Shurakov, A.; Perepelitsa, A.; Kaurova, N.; Svyatodukh, S.; Zilberley, T.; Ryabchun, S.; Smirnov, M.; Ovchinnikov, O.; Goltsman, G. Room temperature silicon detector for IR range coated with Ag2S quantum dots 2019 Phys. Status Solidi RRL 13 1900187-(1-6) details   doi
Tretyakov, I.; Shurakov, A.; Perepelitsa, A.; Kaurova, N.; Svyatodukh, S.; Zilberley, T.; Ryabchun, S.; Smirnov, M.; Ovchinnikov, O.; Goltsman, G. Silicon room temperature IR detectors coated with Ag2S quantum dots 2019 Proc. IWQO 369-371 details   url
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Tretyakov, I.; Svyatodukh, S.; Perepelitsa, A.; Ryabchun, S.; Kaurova, N.; Shurakov, A.; Smirnov, M.; Ovchinnikov, O.; Goltsman, G. Ag2S QDs/Si heterostructure-based ultrasensitive SWIR range detector 2020 Nanomaterials (Basel) 10 1-12 details   doi
Tretyakov, Ivan; Kaurova, N.; Voronov, B. M.; Goltsman, G. N. About effect of the temperature operating conditions on the noise temperature and noise bandwidth of the terahertz range NbN hot-electron bolometers 2018 Proc. 29th Int. Symp. Space Terahertz Technol. 113 details   url
Tretyakov, Ivan; Ryabchun, Sergey; Finkel, Matvey; Maslennikov, Sergey; Maslennikova, Anna; Kaurova, Natalia; Lobastova, Anastasia; Voronov, Boris; Gol'tsman, Gregory Ultrawide noise bandwidth of NbN hot-electron bolometer mixers with in situ gold contacts 2011 IEEE Trans. Appl. Supercond. 21 620-623 details   doi
Tretyakov, Ivan; Ryabchun, Sergey; Finkel, Matvey; Maslennikova, Anna; Kaurova, Natalia; Lobastova, Anastasia; Voronov, Boris; Gol'tsman, Gregory Low noise and wide bandwidth of NbN hot-electron bolometer mixers 2011 Appl. Phys. Lett. 98 033507 (1 to 3) details   doi
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