Zobrazeno 1 - 10
of 206
pro vyhledávání: '"A. F. Sizov"'
Autor:
F. Sizov, Z. Tsybrii, E. Rudenko, Mykola Svavil'nyi, O. Kolomys, M. Vuichyk, Svezhentsova Kateryna, Mykola Skoryk, V. Strelchuk, D. Maziar, O. Gudymenko, D. Polotskiy, V. Panarin, I. Korotash
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::845e311bd6e1afa8950e22160db44984
https://doi.org/10.2139/ssrn.4401748
https://doi.org/10.2139/ssrn.4401748
Autor:
Joanna V. Gumenjuk-Sichevska, Evgen O. Melezhik, Fiodor F. Sizov, S.A. Dvoretskii, N. N. Mikhailov, S.N. Danilov, Z. Tsybrii
Publikováno v:
Semiconductor Physics, Quantum Electronics and Optoelectronics. 24:185-191
The responses of uncooled (T = 300 K) and cooled to T = 78 K antenna-coupled Hg1–xCdxTe-based narrow-gap thin-film photoconductors having large spin-orbit coupling and irradiated by the terahertz (THz) radiation (linearly or circularly polarized) h
Autor:
S. G. Bunchuk, A. G. Golenkov, M.V. Vuichyk, I. O. Lysiuk, V. P. Reva, F. F. Sizov, A.V. Shevchik-Shekera, S. V. Korinets, M.Yu. Kovbasa, S. E. Dukhnin
Publikováno v:
Semiconductor Physics, Quantum Electronics and Optoelectronics. 24:90-99
Room temperature linear arrays (up to 160 detectors in array) from silicon metal- oxide-semiconductor field-effect transistors (Si-MOSFETs) have been designed for sub- THz (radiation frequency 140 GHz) close to real-time direct detection operation sc
Autor:
E.O. Melezhik, Academic O.G. Ivchenko Zaporizhzha machine-building design bureau 'Progress', O.V. Shevchuk, J.V. Gumenjuk-Sichevska, Fiodor F. Sizov
Publikováno v:
Reports of the National Academy of Sciences of Ukraine. :43-52
Autor:
J.V. Gumenjuk-Sichevska, V. A. Shvets, A. G. Golenkov, I.O. Lysiuk, S. A. Dvoretsky, D. G. Ikusov, F. F. Sizov, A. L. Aseev, Anton Latyshev, Z. Tsybrii, A.V. Shevchik-Shekera, N. N. Mikhailov, Yu. G. Sidorov, V. S. Varavin, V. G. Remesnik, M. V. Yakushev
Publikováno v:
Opto-Electronics Review. 27:282-290
We present an overview of our technological achievements in the implementation of detector structures based on mercury cadmium telluride (MCT) heterostructures and nanostructures for IR and THz spectral ranges. We use a special MBE design set for the
Autor:
F. F. Sizov
Publikováno v:
Semiconductor Physics, Quantum Electronics & Optoelectronics, Vol 22, Iss 1, Pp 67-79 (2019)
Brief history of terahertz (THz) and infrared (IR) science and technology, for learning lessons by historical evolution is presented and discussed identifying important (from Author’s point of view) steps for their development. THz still is the not
Autor:
Svitlana G. Bunchuk, Joanna V. Gumenjuk-Sichevska, Vyacheslav V. Zabudsky, Sergey A. Dvoretsky, Nikolay N. Mikhailov, Sergey Danilov, Zinovia F. Tsybrii, F. F. Sizov
Publikováno v:
2020 IEEE Ukrainian Microwave Week (UkrMW).
We present broad-band bolometric detectors based on the epitaxial HgCdTe layers that are sensitive in the radiation range of 0.140 - 1.5 THz and operate at the ambient or liquid nitrogen temperatures as photoconductors.
Publikováno v:
2020 IEEE Ukrainian Microwave Week (UkrMW).
The feasibility of using modern convolutional neural networks solutions in the field of terahertz (THz) imaging was discussed. Characteristics of the 0.14 THz postal scanner for the concealed items detection was described. The methodology for image r
Publikováno v:
Semiconductor Physics, Quantum Electronics & Optoelectronics, Vol 21, Iss 2, Pp 187-194 (2018)
Dynamical screening function of the two-dimensional electron gas in wide HgTe quantum well (QW) has been numerically modelled in this work. Calculations were provided in the Random Phase Approximation (RPA) framework and were based on Lindhard equati
Autor:
S. V. Korinets, S. V. Sapon, F. F. Sizov, A. M. Torchinsky, V. P. Reva, V. V. Zabudsky, A. G. Golenkov
Publikováno v:
Tekhnologiya i Konstruirovanie v Elektronnoi Apparature, Iss 2, Pp 9-14 (2018)
The sensitivity and basic electrical characteristics of the developed direct illumination matrices with charge-coupled devices and electronic multiplication were investigated at room temperatures and low illumination. Photomatrices of 576´288 and 64