2017

  1. Lozovskii, V. N. Crystal Defects in Solar Cells Produced by the Method of Thermomigration / Lozovskii, V. N.; Lomov, A. A.; Lunin, L. S.; Seredin, B. M.; Chesnokov, Yu. M. // SEMICONDUCTORS. 2017. Т.51. С.285-289. — DOI 10.1134/S1063782617030162.
  2. Лозовский, В.Н. Кристаллические дефекты в фотопреобразователях, полученных методом термомиграции. / В.Н.Лозовский, А.А.Ломов, Л.С. Лунин, Б.М.Середин, Ю.М.Чесноков // ФТП. 2017. Т. 51. Вып. 3. C. 297-301. DOI: 10.21883/FTP.2017.03.8264.”
  3. Luchnikov, I. A.Quantum evolution in the stroboscopic limit of repeated measurements / Luchnikov, I. A. ; Filippov, S. N. // PHYSICAL REVIEW A. 2017. Т.95. №2. 022113. – Опубл.: FEB 10 2017. – DOI: 10.1103/PhysRevA.95.022113.
  4. Malykhin, S. A. Photoluminescent properties of single crystal diamond microneedles/ S. A. Malykhin, R. R. Ismagilov, F. T. Tuyakova, E. A. Obraztsova, P. V. Fedotov, A. Ermakova, P. Siyushev, K. G. Katamadze, F. Jelezko, Y. P. Rakovich, and A. N. Obraztsov // Opt. Mater. (Amst). 2017, 75, 49–55 (2018). DOI: 10.1016/j.optmat.2017.10.019.
  5. Mazaletskiy, L.A. The study of effect of solid electrolyte on charge-discharge characteristics of thin-film lithium-ion batteries. / Mazaletskiy L.A., Lebedev M.E., Mironenko A.A., Naumov V.V., Novozhilova A.V., Fedorov I.S., Rudy A.S. // 2017 J. Phys.: Conf. Ser. 917 032030. DOI: 10.1088/1742-6596/917/3/032030.
  6. Mishchenko, I.N. Quantum model of the magnetic dynamics of single-domain particles for describing their magnetization curves and Mossbauer spectra in a weak magnetic field / Mishchenko I.N., Chuev M.A., Cherepanov V.M., Polikarpov M.A. // Bulletin of the Russian Academy of Sciences: Physics. 2017. Т.81. №7. С.850-854 — DOI: 10.3103/S106287381707019X.
  7. Мищенко, И.Н. Квантовая модель магнитной динамики однодоменных частиц для описания их кривых намагничивания и мёссбауэровских спектров в слабом магнитном поле. / И.Н. Мищенко, М.А. Чуев, В.М. Черепанов, М.А. Поликарпов. // Изв. РАН. Сер. физ., 2017, Т. 81, № 7, С. 939–944. DOI: 10.7868/S0367676517070195.”
  8. Mokrov, D.A. New plasma-assisted approach to the fabrication of Cu(In,Ga)(S,Se)2 nanowires / Mokrov D.A., Zimin S.P., Gorlachev E.S., Amirov I.I., Naumov V.V., Gremenok V.F. // Journal of Physics: Conference Series. 2017. Т.816. №1. 012028. — DOI: 10.1088/1742-6596/816/1/012028.
  9. Mordvintsev, V.M. Effect of constructional features of the insulating gap of open TiN–SiO2–W and Si–SiO2–W “sandwich” structures on the process of their electroforming / Mordvintsev V.M., Kudryavtsev S.E. // Russian Microelectronics. 2017.Т.46. №4. С.243-251. — DOI: 10.1134/S1063739717040060.
  10. Мордвинцев, В.М. Влияние особенностей конструкции изолирующей щели открытых “сэндвич”-структур TiN-SiO2-W и Si-SiO2-W на процесс их электроформовки. / Мордвинцев В.М., Кудрявцев С.Е. // Микроэлектроника. 2017. Т. 46. № 4. С. 266-274. “
  11. Mozhaev, P. Pulsed Laser Deposition of YBa2Cu3O*x* with Scanning Beam: Target to Substrate Composition Transfer and Film Structure / Mozhaev, Peter B. , Alexey V. Khoryushin, Julia E. Mozhaeva, Jean-Claude Grivel, Jorn Bindslev Hansen, Claus S. Jacobsen // J Supercond Nov Magn (2017) 30:2401–2428. doi:10.1007/s10948-017-4027-3.
  12. Postnikov, A.V. High concentration of H2 and O2 nanobubbles in water electrolytes and their collective optical effect. / Postnikov A.V., Uvarov I.V., Lokhanin M.V., Svetovoy V.B. // AIP Conference Proceedings, 2017, Vol. 1884, 030003. Scopus, WoS . DOI: 10.1063/1.5002513.
  13. Postnikov, A.V. Electrically controlled cloud of bulk nanobubbles in water solutions. / Postnikov A.V., Uvarov I.V., Lokhanin M.V., Svetovoy V.B. // PLoS ONE, 2017, Vol. 12(7), e0181727. DOI: 10.1371/journal.pone.0181727.
  14. Poydasheva, A. The efficacy of repetitive transcranial magnetic stimulation of left DLPFC with personalized targeting in major depression: preliminary results of pseudo-randomised study / Poydasheva A., Zmeykina E., Chernyavskiy A., Chervyakov A., Lykova J., Suponeva N., Piradov M. // Brain Stimulation, изд-во Elsevier BV (Netherlands), том 10, № 2, с. 474-475. DOI: 10.1016/j.brs.2017.01.390 .
  15. Poydasheva, A. The variability of targets for repetitive transcranial magnetic stimulation based on navigated TMS mapping and intrinsic connectivity measures / Poydasheva A., Zmeykina E., Chernyavskiy A., Chervyakov A., Suponeva N., Piradov M. //Clinical Neurophysiology, издательство Elsevier BV (Netherlands), том 128, № 3, с. e120. DOI: 10.1016/j.clinph.2016.10.336 .
  16. Poydasheva, A.G. ATYPICAL NEUROPLASTICITY CHANGES OF M. EXTENSOR DIGITORUM COMMUNIS CORTICAL REPRESENTATION IN LEFT-HANDED INDIVIDUALS AFTER MOTOR IMAGERY TRAINING SESSIONS ENHANCED BY BRAIN COMPUTER INTERFACE. / Poydasheva A.G., Chernyavskiy А.Yu, Lyukmanov R.Kh, Aziatskaya G.А., Chervyakov А.V., Mokienkо О.А., Chernikovа L.А., Suponeva N.А., Piradov М.А. // Асимметрия, 2017. том 11, № 1, с. 5-12.
  17. Poydasheva, A. G. THE DYNAMICS OF THE M. EXTENSOR DIGITORUM COMMUNIS CORTICAL REPRESENTATION AFTER MOTOR IMAGERY TRAINING SESSIONS USING BRAIN-COMPUTER INTERFACE: CONTROLLED STUDY / Poydasheva, A. G.; Aziatskaya, G. A.; Chernyayskiy, A. Yu.; Lyukmanov, R. X.; Mokienko, O. A.; Chernikova, L. A.; Suponeva, N. A.; Frolov, A. A.; Piradov, M. A. // ZHURNAL VYSSHEI NERVNOI DEYATELNOSTI IMENI I P PAVLOVA. 2017.Том: 67. В:4. С.473-484. Опубликовано: JUL-AUG 2017. – DOI : 10.7868/S0044467717040098.
  18. Poydasheva, A. The stability of hand cortical motor representations in writer’s cramp patients after repetitive transcranial magnetic stimulation / Poydasheva A., Chernyavskiy A., Chervyakov A., Suponeva N., Semenova O., Timerbaeva S., Piradov M. // Clinical Neurophysiology, издательство Elsevier BV (Netherlands), том 128, № 3, с. e29. DOI: 10.1016/j.clinph.2016.10.171.
  19. Privezentsev, V.V. Influence of annealing temperature and its atmosphere on the properties of zinc implanted silicon / Privezentsev V.V., Kulikauskas V.S., Zatekin V.V., Shcherbachev K.D., Tabachkova N.Y., Eidelman K.B., Ksenich S.V., Batrakov A.A. // Journal of Surface Investigation/ 2017. Т.11. №3. С.625- 633. DOI: 10.1134/S1027451017030326.
  20. Privezentsev, V. Quartz modification by Zn ion implantation and swift Xe ion irradiation. / V. Privezentsev, V. Kulikauskas, A. Didyk, V. Skuratov, E. Steinman, A. Tereshchenko, N. Kolesnikov, A. Trifonov, O. Sakharov, S. Ksenich. // Phys. Status Solidi C. 2017. 1700112 (2017) / DOI 10.1002/pssc. Current Topics in Solid State Physics. Т.14. №7. 1700112. DOI: 10.1002/pssc.201700112.
  21. Privezentsev, V. V. Study of silicon doped with zinc ions and annealed in oxygen / Privezentsev, V. V.; Kirilenko, E. P.; Goryachev, A. N.; Batrakov, A. A. // SEMICONDUCTORS. 2017. Т.51. С.178-183. — DOI 10.1134/S1063782617020154.
  22. Привезенцев, В.В. Исследование кремния, легированного ионами цинка и отожженного в кислороде / В.В. Привезенцев, Е.П. Кириленко, А.Н. Горячев, А.А. Батраков // Физика и техника полупроводников. 2017, Т.51, вып. 2, С. 187-197.”
  23. Prokaznikov, A. Surface Assisted Combustion of Hydrogen-Oxygen Mixture in Nanobubbles Produced by Electrolysis / Prokaznikov, Alexander; Tas, Niels; Svetovoy, Vitaly // ENERGIES. 2017 Т.10. №178. — DOI 10.3390/en10020178.
  24. Rezvanov, A. Cryogenic etching of porous low-k dielectrics in CF3Br and CF4 plasmas / Askar Rezvanov, Andrey V. Miakonkikh, Alexey S. Vishnevskiy, Konstantin V. Rudenko, Mikhail R. Baklanov // Journal of Vacuum Science & Technology B, Nanotechnology and Microelectronics: Materials, Processing, Measurement, and Phenomena. 2017. Т.35, В.2. 021204 (2017); doi: 10.1116/1.4975646. DOI: 10.1116/1.4975646.
  25. Rogozhin, A. Nanophotonic structure formation by dry e-beam etching of the resist: resolution limitation origins. / Rogozhin A, Bruk M, Zhikharev E, Sidorov F. // Computer Optics 2017; 41(4): 499-503. DOI: 10.18287/2412-6179-2017-41-4-499-503.
  26. Rudenko, K.V. The processes of atomic layer deposition for formation of layers of gate stack HkMG with minimal topology size of 32 nm / K.V. Rudenko, A.V. Miakonkih, A.E. Rogojin, O.P.Guschin, V.A. Gvozdev // Russian Microelectronics. Т.46. №6. (2017).
  27. Rudyi, A.S. An experimental examination of thin films of lithium phosphorus oxynitride (a solid electrolyte) / Rudyi A.S., Vasil’ev S.V., Lebedev M.E., Metlitskaya A.V., Mironenko A.A., Naumov V.V., Novozhilova A.V., Fedorov I.S., Churilov A.B. // Technical Physics Letters. 2017.Т.43. №6. С.503-506. — DOI: 10.1134/S106378501706013X.
  28. Рудый, А.С. Экспериментальное исследование тонких пленок твердого электролита фосфор-оксинитрида лития. / Рудый А.С., Васильев С.В., Лебедев М.Е., Метлицкая А.В., Мироненко А.А., Наумов В.В., Новожилова А.В., Федоров И.С., Чурилов А.Б. // Письма в журнал технической физики, 2017, том 43, выпуск 11, стр. 3. DOI: 10.21883/PJTF.2017.11.44690.16637 . “
  29. Ryzhii, V. Double injection in graphene p-i-n structures/ / V. Ryzhii, I. Semenikhin, M. Ryzhii, D. Svintsov, V. Vyurkov, A. Satou, T. Otsuji. – in “Nanoheterostructures in terahertz electronics and optoelectronics”, ed. Victor I. Ryzhii, pp. 371-387, Moscow: TECHNOSPHERA, 2017, ISBN 978-5-94836-487-2.
  30. Shilkin, D. A. Optical Magnetism and Fundamental Modes of Nanodiamonds. / Shilkin, D. A., Shcherbakov, M. R., Lyubin, E. V., Katamadze, K.G., Kudryavtsev, O. S., Sedov, V. S., Vlasov, I. I. Fedyanin, A.A. // ACS Photonics. 2017. 4(5). С.1153–1158. – DOI: 10.1021/acsphotonics.7b00007.
  31. Shumilov, A.S. Simulating the chlorine plasma etching profile of high-aspect-ratio trenches in Si / Shumilov A.S., Amirov I.I., Luckichev V.F. // Russian Microelectronics. 2017. Т.46. №5. С.301-308. DOI: 10.1134/S1063739717050092.
  32. Шумилов, А.С. Моделирование профиля травления высокоаспектных канавок в Si в хлорной плазме. / Шумилов А.С., Амиров И.И., Лукичев В.Ф. // Микроэлектроника. 2017. Т. 46. № 5. С. 323-331.”
  33. Svetovoy, V.B. Global consequences of a local Casimir force: Adhered cantilever. / Svetovoy V.B., Melenev A.E., Lokhanin M.V., Palasantzas G. // Applied Physics Letters, 2017, Vol. 111, 011603. DOI: 10.1063/1.4991968.
  34. Svintsov, D. All-graphene field-effect transistor based on lateral tunneling / D. Svintsov, V. Vyurkov, A. Orlikovsky, V. Ryzhii, T. Otsuji. – in “Nanoheterostructures in terahertz electronics and optoelectronics”, ed. Victor I. Ryzhii, pp. 588-600, TECHNOSPHERA, Moscow, 2017, ISBN 978-5-94836-487-2.
  35. Svintsov, D. Hydrodynamic electron transport and nonlinear waves in graphene / D. Svintsov, V. Vyurkov, V. Ryzhii, T. Otsuji. – in “Nanoheterostructures in terahertz electronics and optoelectronics”, ed. Victor I. Ryzhii, pp. 339-352, TECHNOSPHERA, Moscow, 2017, ISBN 978-5-94836-487-2.
  36. Svintsov, D. Voltage-controlled surface plasmon-polaritons in double graphene layer structures / D. Svintsov, V. Vyurkov, V. Ryzhii, T. Otsuji. – in “Nanoheterostructures in terahertz electronics and optoelectronics”, ed. Victor I. Ryzhii, pp. 402-409, TECHNOSPHERA, Moscow, 2017, ISBN 978-5-94836-487-2.
  37. Trushin, O.S. Peculiarities of the energy landscape of a rectangular magnetic nanoisland / Trushin O.S., Barabanova N.I. // Russian Microelectronics. Т.46. №5. С.309-315. – DOI:10.1134/S1063739717050110.
  38. Трушин, О.С. Особенности энергетического рельефа прямоугольного магнитного наноострова. / Трушин О.С., Барабанова Н.И. // Микроэлектроника. 2017, том 46, № 5, с. 332–339. DOI: 10.7868/S0544126917050027.”
  39. Trushin, O. Minimum energy path for the nucleation of misfit dislocations in Ge/Si(001) heteroepitaxy / O. Trushin, E. Maras, A. Stukowski, E. Granato, S.C. Ying, H. Jonsson, and T. Ala-Nissila // Modelling and Simulation in Materials Science and Engineering, 2016, v. 24, n. 3, p. 035007. DOI: 10.1088/0965-0393/24/3/035007 .
  40. Tsukanov, A. V. Integrated Optical-Controlled Diamond Sensors / A. V. Tsukanov // Russian Microelectronics. 2017. V. 46. №4. PP. 225–242. DOI: 10.1134/S1063739717040102 .

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