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Cherednichenko, S.; Drakinskiy, V.; Lecomte, B.; Dauplay, F.; Krieg, J.-M.; Delorme, Y.; Feret, A.; Hübers, H.-W.; Semenov, A.D.; Gol’tsman, G.N. Terahertz heterodyne array based on NbN HEB mixers 2008 Proc. 19th Int. Symp. Space Terahertz Technol. 43 details   url
Hübers, H.-W.; Semenov, A.; Richter, H.; Birk, Manfred; Krocka, Michael; Mair, Ulrich; Smirnov, K.; Gol'tsman, G.; Voronov, B. Terahertz heterodyne receiver with a hot-electron bolometer mixer 2002 Proc. Far-IR, Sub-mm, and mm Detector Technology Workshop details   url
Seliverstov, S. V.; Anfertyev, V. A.; Tretyakov, I. V.; Ozheredov, I. A.; Solyankin, P. M.; Revin, L. S.; Vaks, V. L.; Rusova, A. A.; Goltsman, G. N.; Shkurinov, A. P. Terahertz heterodyne receiver with an electron-heating mixer and a heterodyne based on the quantum-cascade laser 2017 Radiophys. Quant. Electron. 60 518-524 details   doi
Finkel, M. I.; Maslennikov, S. N.; Gol'tsman, G. N. Terahertz heterodyne receivers based on superconductive hot-electron bolometer mixers 2005 Radiophys. Quant. Electron. 48 859-864 details   doi
Ozhegov, R. V.; Gorshkov, K. N.; Vachtomin, Y. B.; Smirnov, K. V.; Finkel, M. I.; Goltsman, G. N.; Kiselev, O. S.; Kinev, N. V.; Filippenko, L. V.; Koshelets, V. P. Terahertz imaging system based on superconducting heterodyne integrated receiver 2014 Proc. THz and Security Applications 113-125 details   doi
Ozhegov, R. V.; Gorshkov, K. N.; Smirnov, K. V.; Gol’tsman, G. N.; Filippenko, L. V.; Koshelets, V. P. Terahertz imaging system based on superconducting integrated receiver 2010 Proc. 2-nd Int. Conf. Terahertz and Microwave radiation: Generation, Detection and Applications 20-22 details   url
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
Iomdina, E. N.; Seliverstov, S. V.; Sianosyan, A. A.; Teplyakova, K. O.; Rusova, A. A.; Goltsman, G. N. Terahertz scanning for evaluation of corneal and scleral hydration 2018 Sovremennye tehnologii v medicine 10 143-149 details   doi
Iomdina, E. N.; Seliverstov, S. V.; Teplyakova, K. O.; Jani, E. V.; Pozdniakova, V. V.; Polyakova, O. N.; Goltsman, G. N. Terahertz scanning of the rabbit cornea with experimental UVB-induced damage: in vivo assessment of hydration and its verification 2021 J. Biomed. Opt. 26 details   doi
Gol'tsman, G. N.; Loudkov, D. N. Terahertz superconducting hot-electron bolometer mixers and their application in radio astronomy 2003 Radiophys. Quant. Electron. 46 604-617 details   doi
Gol’tsman, G. N. Terahertz technology in Russia 1994 24th European Microwave Conf. 1 113-121 details   doi
Kawamura, J.; Tong, C.-Y. E.; Blundell, R.; Papa, D. C.; Hunter, T. R.; Patt, F.; Gol’tsman, G.; Gershenzon, E. Terahertz-frequency waveguide NbN hot-electron bolometer mixer 2001 IEEE Trans. Appl. Supercond. 11 952-954 details   doi
Yagubov, P.; Gol'tsman, G.; Voronov, B.; Seidman, L.; Siomash, V.; Cherednichenko, S.; Gershenzon, E. The bandwidth of HEB mixers employing ultrathin NbN films on sapphire substrate 1996 Proc. 7th Int. Symp. Space Terahertz Technol. 290-302 details   url
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
Finkel, M. I.; Maslennikov, S. N.; Gol'tsman, G. N. The concept of the receiving complex for the “Millimetron” space radio telescope 2007 Radiophys. Quant. Electron. 50 837-846 details   doi
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
Gayduchenko, I. A.; Moskotin, M. V.; Matyushkin, Y. E.; Rybin, M. G.; Obraztsova, E. D.; Ryzhii, V. I.; Goltsman, G. N.; Fedorov, G. E. The detection of sub-terahertz radiation using graphene-layer and graphene-nanoribbon FETs with asymmetric contacts 2018 Materials Today: Proc. 5 27301-27306 details   doi
Semenov, Alexei; Richter, Heiko; Smirnov, Konstantin; Voronov, Boris; Gol'tsman, Gregory; Hübers, Heinz-Wilhelm The development of terahertz superconducting hot-electron bolometric mixers 2004 Supercond. Sci. Technol. 17 436-439 details   doi
Kardakova, A.; Finkel, M.; Morozov, D.; Kovalyuk, V.; An, P.; Dunscombe, C.; Tarkhov, M.; Mauskopf, P.; Klapwijk, T.M.; Goltsman, G. The electron-phonon relaxation time in thin superconducting titanium nitride films 2013 Appl. Phys. Lett. 103 252602 (1 to 4) details   doi
Gol'tsman, G. N.; Gusinskii, E. N.; Malyavkin, A. V.; Ptitsina, N. G.; Selevko, A. G.; Edel'shtein, V. M. The excitonic Zeeman effect in uniaxially-strained germanium 1987 Sov. Phys. JETP 65 1233-1241 details   url
Vakhtomin, Y. B.; Finkel, M. I.; Antipov, S. V.; Smirnov, K. V.; Kaurova, N. S.; Drakinskii, V. N.; Voronov, B. M.; Gol’tsman, G. N. The gain bandwidth of mixers based on the electron heating effect in an ultrathin NbN film on a Si substrate with a buffer MgO layer 2003 J. of communications technol. & electronics 48 671-675 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
Anosov, A. A.; Barabanenkov, Yu. N.; Kazanskii, A. S.; Less, Yu. A.; Sharakshane, A. S. The inverse problem of acoustothermography with correlation reception of thermal acoustic radiation 2009 Acoust. Phys. 55 114-119 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
Iomdina, E. N.; Seliverstov, S.; Sianosyan, A.; Teplyakova, K.; Rusova, A.; Goltsman, G. The prospects of using the radiation for the assessment of corneal and scleral hydration 2016 Acta Ophthalmol. 94 details   doi
Meledin, D.; Tong, C. Y.-E.; Blundell, R.; Kaurova, N.; Smirnov, K.; Voronov, B.; Gol'tsman, G. The sensitivity and IF bandwidth of waveguide NbN hot electron bolometer mixers on MgO buffer layers over crystalline quartz 2002 Proc. 13th Int. Symp. Space Terahertz Technol. 65-72 details   url
Ozhegov, R. V.; Gorshkov, K. N.; Gol'tsman, G. N.; Kinev, N. V.; Koshelets, V. P. The stability of a terahertz receiver based on a superconducting integrated receiver 2011 Supercond. Sci. Technol. 24 035003 details   doi
Baksheeva, K.; Ozhegov, R.; Goltsman, G.; Kinev, N.; Koshelets, V.; Kochnev, A.; Betzalel, N.; Puzenko, A.; Ben Ishai, P.; Feldman, Y. The sub THz emission of the human body under physiological stress 2021 IEEE Trans. Terahertz Sci. Technol. details   doi
Gol’tsman, G. N. The “Millimetron” project, a future space telescope mission 2007 Proc. 18th Int. Symp. Space Terahertz Technol. 255 details   url
Sergeev, A. V.; Aksaev, E. E.; Gogidze, I. G.; Gol’tsman, G. N.; Semenov, A. D.; Gershenzon, E. M. Thermal boundary resistance at YBaCuO film-substrate interface 1993 Phonon Scattering in Condensed Matter VII. Springer Series in Solid-State Sciences 112 405-406 details   doi
Baeva, E. M.; Sidorova, M. V.; Korneev, A. A.; Smirnov, K. V.; Divochy, A. V.; Morozov, P. V.; Zolotov, P. I.; Vakhtomin, Y. B.; Semenov, A. V.; Klapwijk, T. M.; Khrapai, V. S.; Goltsman, G. N. Thermal properties of NbN single-photon detectors 2018 Phys. Rev. Applied 10 064063 (1 to 8) details   doi
Baeva, E. M.; Titova, N. A.; Veyrat, L.; Sacépé, B.; Semenov, A. V.; Goltsman, G. N.; Kardakova, A. I.; Khrapai, V. S. Thermal relaxation in metal films bottlenecked by diffuson lattice excitations of amorphous substrates 2021 arXiv details   url
Baeva, E. M.; Titova, N. A.; Veyrat, L.; Sacépé, B.; Semenov, A. V.; Goltsman, G. N.; Kardakova, A. I.; Khrapai, V. S. Thermal relaxation in metal films limited by diffuson lattice excitations of amorphous substrates 2021 Phys. Rev. Applied 15 054014 details   doi
Il'in, K.; Siegel, M.; Semenov, A.; Engel, A.; Hübers, H.-W.; Hollmann, E.; Gol'tsman, G.; Voronov, B. Thickness dependence of superconducting properties of ultrathin Nb and NbN films 2004 AKF-Frühjahrstagung details   url
Murphy, A.; Semenov, A.; Korneev, A.; Korneeva, Y.; Gol'tsman, G.; Bezryadin, A. Three temperature regimes in superconducting photon detectors: quantum, thermal and multiple phase-slips as generators of dark counts 2015 Sci. Rep. 5 10174 (1 to 10) details   doi
Zvagelsky, R. D.; Chubich, D. A.; Kolymagin, D. A.; Korostylev, E. V.; Kovalyuk, V. V.; Prokhodtsov, A. I.; Tarasov, A. V.; Goltsman, G. N.; Vitukhnovsky, A. G. Three-dimensional polymer wire bonds on a chip: morphology and functionality 2020 J. Phys. D: Appl. Phys. 53 355102 details   doi
Palma, F.; Teppe, F.; Fatimy, A. E.; Green, R.; Xu, J.; Vachontin, Y.; Tredicucci, A.; Goltsman, G.; Knap, W. THz communication system based on a THz quantum cascade laser and a hot electron bolometer 2010 35th Int. Conf. Infrared, Millimeter, and Terahertz Waves 11623798 (1 to 2) details   doi
Gorokhov, G.; Bychanok, D.; Gayduchenko, I.; Rogov, Y.; Zhukova, E.; Zhukov, S.; Kadyrov, L.; Fedorov, G.; Ivanov, E.; Kotsilkova, R.; Macutkevic, J.; Kuzhir, P. THz spectroscopy as a versatile tool for filler distribution diagnostics in polymer nanocomposites 2020 Polymers (Basel) 12 3037 (1 to 14) 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
Zhang, J.; Słysz, W.; Pearlman, A.; Verevkin, A.; Sobolewski, R.; Okunev, O.; Chulkova, G.; Gol’tsman, G. N. Time delay of resistive-state formation in superconducting stripes excited by single optical photons 2003 Phys. Rev. B 67 132508 (1 to 4) details   doi
Hübers, H.-W.; Semenov, A.; Holldack, K.; Schade, U.; Wüstefeld, G.; Gol’tsman, G. Time domain analysis of coherent terahertz synchrotron radiation 2005 Appl. Phys. Lett. 87 184103 (1 to 3) details   doi
Zhang, J.; Verevkin, A.; Slysz, W.; Chulkova, G.; Korneev, A.; Lipatov, A.; Okunev, O.; Gol’tsman, G. N.; Sobolewski, Roman Time-resolved characterization of NbN superconducting single-photon optical detectors 2017 Proc. SPIE 10313 103130F (1 to 3) details   doi
Lobanov, Y. V.; Vakhtomin, Y. B.; Pentin, I. V.; Rosental, V. A.; Smirnov, K. V.; Goltsman, G. N.; Volkov, O. Y.; Dyuzhikov, I. N.; Galiev, R. R.; Ponomarev, D. S.; Khabibullin, R. A. Time-resolved measurements of light–current characteristic and mode competition in pulsed THz quantum cascade laser 2021 Optical Engineering 60 1-8 details   doi
Elvira, D.; Michon, A.; Fain, B.; Patriarche, G.; Beaudoin, G.; Robert-Philip, I.; Vachtomin, Y.; Divochiy, A. V.; Smirnov, K. V.; Gol’tsman, G. N.; Sagnes, I.; Beveratos, A. Time-resolved spectroscopy of InAsP/InP(001) quantum dots emitting near 2 μm 2010 Appl. Phys. Lett. 97 131907 (1 to 3) details   doi
Vodolazov, D. Y.; Manova, N. N.; Korneeva, Y. P.; Korneev, A. A. Timing jitter in NbN superconducting microstrip single-photon detector 2020 Phys. Rev. Applied 14 044041 (1 to 8) 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
Galin, M. A.; Klushin, A. M.; Kurin, V. V.; Seliverstov, S. V.; Finkel, M. I.; Goltsman, G. N.; Müller, F.; Scheller, T.; Semenov, A. D. Towards local oscillators based on arrays of niobium Josephson junctions 2015 Supercond. Sci. Technol. 28 055002 (1 to 7) details   doi
Elezov, M.; Scherbatenko, M.; Sych, D.; Goltsman, G.; Arakelyan, S.; Evlyukhin, A.; Kalachev, A.; Naumov, A. Towards the fiber-optic Kennedy quantum receiver 2019 EPJ Web Conf. 220 03011 (1 to 2) details   doi
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
Gayduchenko, I.; Fedorov, G.; Titova, N.; Moskotin, M.; Obraztsova, E.; Rybin, M.; Goltsman, G. Towards to the development of THz detectors based on carbon nanostructures 2018 J. Phys.: Conf. Ser. 1092 012039 (1 to 4) details   doi
Beck, M.; Rousseau, I.; Klammer, M.; Leiderer, P.; Mittendorff, M.; Winnerl, S.; Helm, M.; Gol'tsman, G.N.; Demsar, J. Transient increase of the energy gap of superconducting NbN thin films excited by resonant narrow-band terahertz pulses 2013 Phys. Rev. Lett. 110 267003 (1 to 5) details   doi
Lindgren, M.; Trifonov, V.; Zorin, M.; Danerud, M.; Winkler, D.; Karasik, B. S.; Gol’tsman, G. N.; Gershenzon, E.M. Transient resistive photoresponse of YBa2Cu3O7−δ films using low power 0.8 and 10.6 μm laser radiation 1994 Appl. Phys. Lett. 64 3036-3038 details   doi
Bell, Matthew; Sergeev, Andrei; Goltsman, Gregory; Bird, Jonathan; Verevkin, Aleksandr Transition-edge sensors based on superconducting nanowires 2006 Proc. APS March Meeting B38.00001 details   url
Gershenzon, E. M.; Gol'tsman, G. N. Transitions of electrons between excited states of donors in germanium 1971 JETP Lett. 14 63-65 details   url
Loudkov, D.; Tong, C.-Y. E.; Marrone, D. P.; Ryabchun, S.; Paine, S. N.; Blundell, R. Transmission measurements of infrared filters for low-noise terahertz receiver applications 2005 Proc. 16th Int. Symp. Space Terahertz Technol. 354-357 details   url
Sergeev, A. V.; Semenov, A. D.; Kouminov, P.; Trifonov, V.; Goghidze, I. G.; Karasik, B. S.; Gol’tsman, G. N.; Gershenzon, E. M. Transparency of a YBa2Cu3O7-film/substrate interface for thermal phonons measured by means of voltage response to radiation 1994 Phys. Rev. B Condens. Matter. 49 9091-9096 details   doi
Semenov, A. D.; Sergeev, A. V.; Kouminov, P.; Goghidze, I. G.; Heusinger, M. A.; Nebosis, R. S.; Gol'tsman, G. N.; Gershenzon, E. M.; Renk, K. F. Transparency of YBCO film/substrate interfaces for thermal phonons determined by photoresponse measurements 1993 Proc. 1st European Conf. on Appl. Supercond. 2 1443-1446 details   url
Rath, P.; Vetter, A.; Kovalyuk, V.; Ferrari, S.; Kahl, O.; Nebel, C.; Goltsman, G. N.; Korneev, A.; Pernice, W. H. P. Travelling-wave single-photon detectors integrated with diamond photonic circuits: operation at visible and telecom wavelengths with a timing jitter down to 23 ps 2016 Integrated Optics: Devices, Mat. Technol. XX 9750 135-142 details   doi
Averkin, A. S.; Shishkin, A. G.; Chichkov, V. I.; Voronov, B. M.; Goltsman, G. N.; Karpov, A.; Ustinov, A. V. Tunable frequency-selective surface based on superconducting split-ring resonators 2014 8th Metamaterials details   openurl
Gayduchenko, I.; Xu, S. G.; Alymov, G.; Moskotin, M.; Tretyakov, I.; Taniguchi, T.; Watanabe, K.; Goltsman, G.; Geim, A. K.; Fedorov, G.; Svintsov, D.; Bandurin, D. A. Tunnel field-effect transistors for sensitive terahertz detection 2021 Nat. Commun. 12 543 details   doi
Gao, J. R.; Hajenius, M.; Baselmans, J. J. A.; Yang, Z. Q.; Baryshev, A. M.; Barends, R.; Klapwijk, T. M.; Voronov, B.; Gol'tsman, G.; Callaos, N. Twin-slot antenna coupled NbN hot electron bolometer mixers for space applications 2005 Proc. 9-th WMSCI 9 148-153 details   url
Ryzhii, V.; Otsuji, T.; Ryzhii, M.; Leiman, V. G.; Fedorov, G.; Goltzman, G. N.; Gayduchenko, I. A.; Titova, N.; Coquillat, D.; But, D.; Knap, W.; Mitin, V.; Shur, M. S. Two-dimensional plasmons in lateral carbon nanotube network structures and their effect on the terahertz radiation detection 2016 J. Appl. Phys. 120 044501 (1 to 13) details   doi
Semenov, A.; Engel, A.; Il'in, K.; Gol'tsman, G.; Siegel, M.; Hübers, H.-W. Ultimate performance of a superconducting quantum detector 2003 Eur. Phys. J. Appl. Phys. 21 171-178 details   doi
Il’in, K. S.; Milostnaya, I. I.; Verevkin, A. A.; Gol’tsman, G. N.; Gershenzon, E. M.; Sobolewski, R. Ultimate quantum efficiency of a superconducting hot-electron photodetector 1998 Appl. Phys. Lett. 73 3938-3940 details   doi
Verevkin, A.; Zhang, J.; Pearlman, A.; Slysz, W.; Sobolewski, Roman; Korneev, A.; Kouminov, P.; Okunev, O.; Chulkova, G.; Gol'tsman, G. Ultimate sensitivity of superconducting single-photon detectors in the visible to infrared range 2004 ResearchGate details   url
Mohan, Nishant; Minaeva, Olga; Goltsman, Gregory N.; Saleh, Mohammed F.; Nasr, Magued B.; Sergienko, Alexander V.; Saleh, Bahaa E.; Teich, Malvin C. Ultrabroadband coherence-domain imaging using parametric downconversion and superconducting single-photon detectors at 1064 nm 2009 Appl. Opt. 48 4009–4017 details   doi
Korneev, A.; Minaeva, O.; Divochiy, A.; Antipov, A.; Kaurova, N.; Seleznev, V.; Voronov, B.; Gol’tsman, G.; Pan, D.; Kitaygorsky, J.; Slysz, W.; Sobolewski, R. Ultrafast and high quantum efficiency large-area superconducting single-photon detectors 2007 Proc. SPIE 6583 65830I (1 to 9) details   doi
Goltsman, G. N. Ultrafast nanowire superconducting single-photon detector with photon number resolving capability 2009 Proc. SPIE 7236 72360D (1 to 11) details   doi
Okunev, O.; Smirnov, K.; Chulkova, G.; Korneev, A.; Lipatov, A.; Gol'tsman, G.; Zhang, J.; Slysz, W.; Verevkin, A.; Sobolewski, Roman Ultrafast NBN hot-electron single-photon detectors for electronic applications 2002 Abstracts 8-th IUMRS-ICEM details   url
Nebosis, R. S.; Heusinger, M. A.; Schatz, W.; Renk, K. F.; Gol’tsman, G. N.; Karasik, B. S.; Semenov, A. D.; Gershenzon, E. M. Ultrafast photoresponse of a structured YBa2Cu3O7-δ thin film to ultrashort FIR laser pulses 1993 IEEE Trans. Appl. Supercond. 3 2160-2162 details   doi
Nebosis, R. S.; Heusinger, M. A.; Semenov, A. D.; Lang, P. T.; Schatz, W.; Steinke, R.; Renk, K. F.; Gol'tsman, G. N.; Karasik, B. S.; Gershenzon, E. M. Ultrafast photoresponse of an YBa2Cu3O7-δ film to far-infrared radiation pulses 1993 Opt. Lett. 18 96-97 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
Ozhegov, R. V.; Smirnov, A. V.; Vakhtomin, Yu. B.; Smirnov, K. V.; Divochiy, A. V.; Goltsman, G. N. Ultrafast superconducting bolometer receivers for terahertz applications 2009 Proc. PIERS 867 details   url
Xu, Y.; Zheng, X.; Williams, C.; Verevkin, A.; Sobolewski, R.; Chulkova, G.; Lipatov, A.; Okunev, O.; Smirnov, K.; Gol’tsman, G. N. Ultrafast superconducting hot-electron single-photon detector 2001 CLEO 345 details   doi
Goltsman, G.; Korneev, A.; Divochiy, A.; Minaeva, O.; Tarkhov, M.; Kaurova, N.; Seleznev, V.; Voronov, B.; Okunev, O.; Antipov, A.; Smirnov, K.; Vachtomin, Yu.; Milostnaya, I.; Chulkova, G. Ultrafast superconducting single-photon detector 2009 J. Modern Opt. 56 1670-1680 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
Verevkin, A. A.; Pearlman, A.; Slysz, W.; Zhang, J.; Sobolewski, R.; Chulkova, G.; Okunev, O.; Kouminov, P.; Drakinskij, V.; Smirnov, K.; Kaurova, N.; Voronov, B.; Gol’tsman, G.; Currie, M. Ultrafast superconducting single-photon detectors for infrared wavelength quantum communications 2003 Proc. SPIE 5105 160-170 details   doi
Gol'tsman, G. N.; Korneev, A.; Rubtsova, I.; Milostnaya, I.; Chulkova, G.; Minaeva, O.; Smirnov, K.; Voronov, B.; Słysz, W.; Pearlman, A.; Verevkin, A.; Sobolewski, R. Ultrafast superconducting single-photon detectors for near-infrared-wavelength quantum communications 2005 Phys. Stat. Sol. (C) 2 1480-1488 details   doi
Verevkin, A.; Pearlman, A.; Slysz, W.; Zhang, J.; Currie, M.; Korneev, A.; Chulkova, G.; Okunev, O.; Kouminov, P.; Smirnov, K.; Voronov, B.; Gol'tsman, G. N.; Sobolewski, R. Ultrafast superconducting single-photon detectors for near-infrared-wavelength quantum communications 2004 J. Modern Opt. 51 1447-1458 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, 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
Gershenzon, E. M.; Gol’tsman, G. N.; Dzardanov, A. L.; Zorin, M. A. Ultrafast superconductive switch 1991 IEEE Trans. Magn. 27 2844-2846 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
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
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
Dube, I.; Jiménez, D.; Fedorov, G.; Boyd, A.; Gayduchenko, I.; Paranjape, M.; Barbara, P. Understanding the electrical response and sensing mechanism of carbon-nanotube-based gas sensors 2015 Carbon 87 330-337 details   doi
Baeva, E. M.; Titova, N. A.; Kardakova, A. I.; Piatrusha, S. U.; Khrapai, V. S. Universal bottleneck for thermal relaxation in disordered metallic films 2020 JETP Lett. 111 104-108 details   doi
Gershenson, E. M.; Gol'tsman, G. N.; Elant'ev, A. I.; Kagane, M. L.; Multanovskii, V. V.; Ptitsina, N. G. Use of submillimeter backward-wave tube spectroscopy in determination of the chemical nature and concentration of residual impurities in pure semiconductors 1983 Sov. Phys. Semicond. 17 908-913 details   url
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
Edward Tong, C.-Y.; Loudkov, Denis N.; Paine, Scott N.; Marrone, Dan P.; Blundell, Raymond Vector measurement of the beam pattern of a 1.5 THz superconducting HEB receiver 2005 Proc. 16th Int. Symp. Space Terahertz Technol. 453-456 details   url
Vodolazov, D. Y.; Korneeva, Y. P.; Semenov, A. V.; Korneev, A. A.; Goltsman, G. N. Vortex-assisted mechanism of photon counting in a superconducting nanowire single-photon detector revealed by external magnetic field 2015 Phys. Rev. B 92 104503 (1 to 9) details   doi
Kovalyuk, V.; Ferrari, S.; Kahl, O.; Semenov, A.; Lobanov, Y.; Shcherbatenko, M.; Korneev, A.; Pernice, W.; Goltsman, G. Waveguide integrated superconducting single-photon detector for on-chip quantum and spectral photonic application 2017 J. Phys.: Conf. Ser. 917 062032 details   doi
Kovalyuk, V.; Ferrari, S.; Kahl, O.; Semenov, A.; Lobanov, Yu; Shcherbatenko, M.; Korneev, A; Pernice, W.; Goltsman, G. Waveguide integrated superconducting single-photon detector for on-chip quantum and spectral photonic application 2017 Proc. SPBOPEN 421-422 details   url
Kahl, O.; Ferrari, S.; Kovalyuk, V.; Goltsman, G. N.; Korneev, A.; Pernice, W. H. P. Waveguide integrated superconducting single-photon detectors with high internal quantum efficiency at telecom wavelengths 2015 Sci. Rep. 5 10941 (1 to 11) details   doi
Ferrari, S.; Kahl, O.; Kovalyuk, V.; Goltsman, G. N.; Korneev, A.; Pernice, W. H. P. Waveguide-integrated single- and multi-photon detection at telecom wavelengths using superconducting nanowires 2015 Appl. Phys. Lett. 106 151101 (1 to 5) details   doi
Gershenzon, E. M.; Gershenzon, M. E.; Goltsman, G. N.; Semenov, A. D.; Sergeev, A. V. Wide-band highspeed Nb and YBaCuO detectors 1991 IEEE Trans. Magn. 27 2836-2839 details   doi
Cherednichenko, S.; Rönnung, F.; Gol'tsman, G.; Kollberg, E.; Winkler, D. YBa2Cu3O7−δ hot-electron bolometer mixer 2000 Phys. C: Supercond. 341-348 2653-2654 details   doi
Cherednichenko, S.; Rönnung, F.; Gol’tsman, G.; Kollberg, E.; Winkler, D. YBa2Cu3O7-δ hot-electron bolometer mixer at 0.6 THz 2000 Proc. 11th Int. Symp. Space Terahertz Technol. 517-522 details   url
Cherednichenko, S.; Ronnung, F.; Gol'tsman, G.; Gershenzon, E.; Winkler, D. YBa2Cu3O7-δ hot-electron bolometer with submicron dimensions 1999 Proc. 10th Int. Symp. Space Terahertz Technol. 181-189 details   url
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