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Baksheeva, K.; Vdovydchenko, A.; Gorshkov, K.; Ozhegov, R.; Kinev, N.; Koshelets, V.; Goltsman, G. Study of human skin radiation in the terahertz frequency range 2019 J. Phys.: Conf. Ser. 1410 012076 (1 to 5) details   doi
Matyushkin, Y. E.; Gayduchenko, I. A.; Moskotin, M. V.; Goltsman, G. N.; Fedorov, G. E.; Rybin, M. G.; Obraztsova, E. D. Graphene-layer and graphene-nanoribbon FETs as THz detectors 2018 J. Phys.: Conf. Ser. 1124 051054 details   doi
Moskotin, M. V.; Gayduchenko, I. A.; Goltsman, G. N.; Titova, N.; Voronov, B. M.; Fedorov, G. F.; Pyatkov, F.; Hennrich, F. Bolometric effect for detection of sub-THz radiation with devices based on carbon nanotubes 2018 J. Phys.: Conf. Ser. 1124 051050 (1 to 5) details   doi
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
Ovchinnikov, Yu. N.; Varlamov, A. A. Fluctuation-dissipative phenomena in a narrow superconducting channel carrying current below critical 2009 arXiv 0910.2659v1 1-4 details   url
Belosevich, V. V.; Gayduchenko, I. A.; Titova, N. A.; Zhukova, E. S.; Goltsman, G. N.; Fedorov, G. E.; Silaev, A. A. Response of carbon nanotube film transistor to the THz radiation 2018 EPJ Web Conf. 195 05012 (1 to 2) details   doi
Bandurin, D. A.; Gayduchenko, I.; Cao, Y.; Moskotin, M.; Principi, A.; Grigorieva, I. V.; Goltsman, G.; Fedorov, G.; Svintsov, D. Dual origin of room temperature sub-terahertz photoresponse in graphene field effect transistors 2018 Appl. Phys. Lett. 112 141101 (1 to 5) details   doi
Fedorov, G. E.; Gaiduchenko, I. A.; Golikov, A. D.; Rybin, M. G.; Obraztsova, E. D.; Voronov, B. M.; Coquillat, D.; Diakonova, N.; Knap, W.; Goltsman, G. N.; Samartsev, V. V.; Vinogradov, E. A.; Naumov, A. V.; Karimullin, K. R. Response of graphene based gated nanodevices exposed to THz radiation 2015 EPJ Web of Conferences 103 10003 (1 to 2) details   doi
Kardakova, A.; Shishkin, A.; Semenov, A.; Goltsman, G. N.; Ryabchun, S.; Klapwijk, T. M.; Bousquet, J.; Eon, D.; Sacépé, B.; Klein, T.; Bustarret, E. Relaxation of the resistive superconducting state in boron-doped diamond films 2016 Phys. Rev. B 93 064506 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
Huard, B.; Pothier, H.; Esteve, D.; Nagaev, K. E. Electron heating in metallic resistors at sub-Kelvin temperature 2007 Phys. Rev. B 76 165426(1-9) 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
Ptitsina, N. G.; Chulkova, G. M.; Il’in, K. S.; Sergeev, A. V.; Pochinkov, F. S.; Gershenzon, E. M.; Gershenson, M. E. Electron-phonon interaction in disordered metal films: The resistivity and electron dephasing rate 1997 Phys. Rev. B 56 10089-10096 details   doi
Ozhegov, R. V.; Okunev, O. V.; Gol’tsman, G. N.; Filippenko, L. V.; Koshelets, V. P. Noise equivalent temperature difference of a superconducting integrated terahertz receiver 2009 J. Commun. Technol. Electron. 54 716-720 details   doi
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
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