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  Author Title Year Publication Volume Pages Links
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
Iomdina, E. N.; Goltsman, G. N.; Seliverstov, S. V.; Sianosyan, A. A.; Teplyakova, K. O.; Rusova, A. A. Study of transmittance and reflectance spectra of the cornea and the sclera in the THz frequency range 2016 J. Biomed. Opt. 21 97002 (1 to 5) 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
Fedorov, G.; Gayduchenko, I.; Titova, N.; Gazaliev, A.; Moskotin, M.; Kaurova, N.; Voronov, B.; Goltsman, G. Carbon nanotube based schottky diodes as uncooled terahertz radiation detectors 2018 Phys. Status Solidi B 255 1700227 (1 to 6) 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
Gayduchenko, I. A.; Fedorov, G. E.; Stepanova, T. S.; Titova, N.; Voronov, B. M.; But, D.; Coquillat, D.; Diakonova, N.; Knap, W.; Goltsman, G. N. Asymmetric devices based on carbon nanotubes as detectors of sub-THz radiation 2016 J. Phys.: Conf. Ser. 741 012143 (1 to 6) details   doi
Fedorov, G.; Kardakova, A.; Gayduchenko, I.; Voronov, B. M.; Finkel, M.; Klapwijk, T. M.; Goltsman, G. Photothermoelectric response in asymmetric carbon nanotube devices exposed to sub-THz radiation 2014 Proc. 25th Int. Symp. Space Terahertz Technol. 71 details   url
Matyushkin, Y.; Kaurova, N.; Voronov, B.; Goltsman, G.; Fedorov, G. On chip carbon nanotube tunneling spectroscopy 2020 Fullerenes, Nanotubes and Carbon Nanostructures 28 50-53 details   doi
Fedorov, G.; Kardakova, A.; Gayduchenko, I.; Charayev, I.; Voronov, B.M.; Finkel, M.; Klapwijk, T.M.; Morozov, S.; Presniakov, M.; Bobrinetskiy, I.; Ibragimov, R.; Goltsman, G. Photothermoelectric response in asymmetric carbon nanotube devices exposed to sub-terahertz radiation 2013 Appl. Phys. Lett. 103 181121 (1 to 5) details   doi
Pyatkov, F.; Khasminskaya, S.; Kovalyuk, V.; Hennrich, F.; Kappes, M. M.; Goltsman, G. N.; Pernice, W. H. P.; Krupke, R. Sub-nanosecond light-pulse generation with waveguide-coupled carbon nanotube transducers 2017 Beilstein J. Nanotechnol. 8 38-44 details   doi
Zubkova, E.; Golikov, A.; An, P.; Kovalyuk, V.; Korneev, A.; Ferrari, S.; Pernice, W.; Goltsman, G. CWDM demultiplexer using anti-reflection, contra-directional couplers based on silicon nitride rib waveguide 2019 J. Phys.: Conf. Ser. 1410 012179 details   doi
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
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
Gershenzon, Ye. M.; Goltsman, G. N.; Yelantyev, A. I.; Petrova, Ye. B.; Ptitsina, N. G.; Filatov, V. S. Lecture demonstrations of properties of superconductors and liquid helium 1987 USSR Rept Phys. Math. JPRS UPM 24 51 details   url
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
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