Список научных публикаций сотрудников кафедры в 2018 году

 
NАвтор(ы) СПбПУАвторский коллективНазвание статьиСсылкаИндекс Scopus
1Агапьев К.Б., Иванов В.К.Агапьев К.Б., Иванов В.К., Король А.В., Соловьев А.В.Каналирование ультрарелятивистских частиц в кристалле алмазаНаучно-технические ведомости СПбГПУ. Физико-математические науки. (St. Petersburg Polytechnical University Journal: Physics and Mathematics) 2018. Т. 11. № 2. С. 139 – 150. (DOI: 10. 18721/ JPM.11213) 
2K.B. Agapev, V.K. IvanovK.B. Agapev, A.V. Pavlov, V.K. Ivanov, A.V. Korol, A.V. Solov'yov.Channeling and Radiation of Electrons and Positrons in Periodically Bent Diamond CrystallsInternational Conference “Dynamics of Systems on the Nanoscale". (DySoN 2018, October 08-12, 2018, Potsdam, Germany). Book of Abstracts. Th-IV-3, P. 80-81. 
3K.B. Agapev, V.K. IvanovA.V. Pavlov, K.B. Agapev, V.K. Ivanov, A.V. Korol, A.V. Solov’yov.Channeling of Electrons and Positrons in Periodically Bent Diamond CrystallsInternational Conference “Dynamics of Systems on the Nanoscale". (DySoN 2018, October 08-12, 2018, Potsdam, Germany). Book of Abstracts. PS-01, P. 96-97 
4K.B. Agapev, V.K. IvanovK. B. Agapev, I. I. Vrubel, R. G. Polozkov, V. K. Ivanov.Modeling of C60 pseudopotential with the different basis setsIOP Conf. Series: Journal of Physics: Conf. Series 1092 (2018) 012001 
5K.B. Agapev, V.K. IvanovK.B. Agapev, I.I. Vrubel, R.G. Polozkov, V.K. IvanovThe model of the fullerene C60 and its ions C60+ , C60- pseudopotentials for molecular dynamics purposesEur. Phys. J. D (2018) 72: 196 (https:// doi.org/ 10.1140/ epjd/ e2018-90229-1) 
6Andreeva T.A.,Lukin A.Yа.Andreeva, T.A., Bokhman, E.D., Venediktov, V.Y.U., Gordeev, S. V, Korolev, A.N., Kos'mina, M.A., Lukin, A.Yа., Shur, V.L.Estimation of metrological characteristics of a high-precision digital autocollimator using an angle encoder.2018. Journal of Optical Technology (A Translation of Opticheskii Zhurnal). 85 (7), pp. 406-409. (перевод из Оптический журнал, т.85, №7 (Июль 2018), сс. 39-43) 
7Bagraev N.T.Fursey, G., Zakirov, I., Bagraev, N., Egorov, N., Trofimov, V., Bocharov, V., Nashchekin, A., Popov, E.The energy spectrum of field emission electrons from HOPG, mwCNT and graphene-like structures. 2018.31st International Vacuum Nanoelectronics Conference, IVNC 2018. 
8Bagraev N.T., Mashkov V.A., Romanov V. V, Rul' N.I., Taranets K.B.Bagraev, N.T., Klyachkin, L.E., Khromov, V.S., Malyarenko, A.M., Mashkov, V.A., Matveev, T. V, Romanov, V. V, Rul', N.I., Taranets, K.B.High Temperature Quantum Kinetic Effects in Silicon Nanosandwiches.2018. Semiconductors. 52 (4), pp. 478-484. 
9Venevtsev I.D., Khanin V., Rodnyi P.A.Venevtsev, I.D., Khanin, V., Rodnyi, P.A., Wieczorek, H., Ronda, C.Temperature quenching of radio- and photoluminescence of Y3(Ga,Al)5O12:Ce3+ and Gd3(Ga,Al)5O12:Ce3+ Garnet Ceramics.2018. IEEE Transactions on Nuclear Science. 65 (8), pp. 2090-2096. 
10Горобей Н. Н.Лукьяненко А.С.Квантование плотности энергии в замкнутой вселеннойНаучно-технические ведомости СПбГПУ. Физико-математические науки // 2018. Т.11.№1. С.147-156 
11Gorobey N.N., Lukyanenko A.S.Gorobey, N.N., Lukyanenko, A.S., Shavrin, A.A.A ground state and quantization of the energy of matter in the Friedmann universe. 2018.Journal of Physics: Conference Series. 1135 (1) 
12Dunaevskii S.M., Mikhailenko E.K.Dunaevskii, S.M., Lobanova, E.Y., Mikhailenko, E.K., Pronin, I.I.Electronic and Magnetic Structure of Intercalated Graphene Films. 2018.Physics of the Solid State. 60 (6), pp. 1214-1218. 
13Zelikman M.A.Zelikman, M.A.Hysteresis in the Behavior of a 3D Ordered Josephson Medium in a Magnetic Field for Not Small Values of Pinning Parameters. 2018.Technical Physics. 63 (11), pp. 1560-1568. 
14Kozhevnikov V.A., Privalov V.E.Kozhevnikov, V.A., Privalov, V.E.Radiation Amplification in Lasers with Regular Polygon Cross Sections. 2018.Russian Physics Journal. 61 (5), pp. 913-917 (перевод из Известия ВУЗов. Физика 2018, т.61, №5, с.94-97) 
15Kozlovski V. V, Vasil'ev A.E.Kozlovski, V. V, Vasil'ev, A.E., Karaseov, P.A., Lebedev, A.A.Formation of Radiation Defects by Proton Braking in Lightly Doped n- and p-SiC Layers.2018. Semiconductors. 52 (3), pp. 310-315. (перевод из ФТП, 2018, т.52, в.3, с.327-332) 
16Kozlovski V. V.Strel'chuk, A.M., Kalyadin, A.E., Lebedev, A.A., Kozlovski, V. V, Romanov, L.P., Petrov, V.A.Effect of electron irradiation on electrical and electroluminescent properties of n+p 4H-SiC structures.2018. Materials Science Forum. 924 MSF pp. 257-260. 
17Kozlovski V. V.Lebedev, A.A., Kozlovski, V. V, Levinshtein, M.E., Rumyantsev, S.L., Palmour, J.W.Effect of high energy electron irradiation on electrical and noise properties of 4H-SiC Schottky diodes.2018. Materials Science Forum. 924 MSF pp. 605-608. 
18Kozlovski V. V.Kozlovski, V. V, Lebedev, A.A., Levinshtein, M.E., Rumyantsev, S.L., Palmour, J.W.Electrical and noise properties of proton irradiated 4H-SiC Schottky diodes.2018. Journal of Applied Physics. 123 (2), 
19Kozlovski V. V.Kozlovski, V. V, Lebedev, A.A., Davydovskaya, K.S., Lyubimova,Y. V Galvanic and Capacitive Effects in n-SiC Conductivity Compensation by Radiation-Induced Defects. 2018.Semiconductors. 52 (12), pp. 1635-1637. 
20Konyukh D.A., Parshin D.A.Konyukh, D.A., Bel'tyukov, Y.M., Parshin, D.A.Phonons, Diffusons, and the Boson Peak in Two-Dimensional Lattices with Random Bonds.2018. Physics of the Solid State. 60 (2), pp. 376-381. (перевод из ФТТ, 2018, т.60, в.2, с.369-374) 
21Krupina M.A.Melker, A.I., Krupina, M.A., Zarafutdinov, R.M.Fullerenes of the?N series.2018. Materials Physics and Mechanics. 39 (1), pp. 49-55 
22Лукин А.Я.Ю.Г.Захаренко,Н.А.Кононова, А.Я Лукин, З.В.Фомкина,К.В.ЧекирдаРазработка прикладного программного обеспечения для комплекса аппаратных средств высшей точности для воспроизведения и передачи единицы длиныПриборы, 12 (2018), сс.42-47 
23Lukin A.Yа.Bokhman, E.D., Venediktov, V.Y.U., Korolev, A.N., Lukin, A.Yа.Digital goniometer with a two-dimensional scale.2018. Journal of Optical Technology (A Translation of Opticheskii Zhurnal). 85 (5), pp. 269-274. (перевод из Оптический журнал , т .85, №5, сс . 19-25) 
24Насрединов Ф.С.A.Marchenko, F.Nasredinov and P.P.SereginDynamics of the two-electron processes in impurity semiconductors.Lambert Academic Publishing, 2018, 390 pp. 
25Nasredinov F.S.Marchenko, A. V, Nasredinov, F.S., Kiselev, V.S., Seregin, P.P.Analysis of the Parameters of the M?ssbauer Spectra and the Spectra of Nuclear Quadrupole Resonance of the Superconducting Ceramic2018. Glass Physics and Chemistry. 44 (2), pp. 92-99. (перевод из Физика и химия стекла, 2018, 44 (2), 117-127) 
26Nasredinov F.S.Marchenko, A. V, Nasredinov, F.S., Kiselev, V.S., Seregin, P.P., Shakhovich, K.B.Effective Charges of Atoms of HTSC La2 - xSrxCuO4 Ceramics Determined from the Analysis of the Parameters of the Nuclear Quadrupole Interaction.2018. Glass Physics and Chemistry. 44 (5), pp. 412-417. 
27Parshin D.A.Beltukov, Y.M., Parshin, D.A., Giordano, V.M., Tanguy, A.Propagative and diffusive regimes of acoustic damping in bulk amorphous material.2018. Physical Review E. 98 (2), . 
28Petrov V.N.Pavlov, A., Ustinov, A., Petrov, V.Spin relaxation length for medium energy electrons in Pd and LiF ultrathin films.2018. Journal of Electron Spectroscopy and Related Phenomena. 223 pp. 62-66. 
29Petrov V.N., Kozlovski, V. V,Emtsev, V. V, Gushchina, E. V, Petrov, V.N., Tal'nishnih, N.A., Chernyakov, A.E., Shabunina, E.I., Shmidt, N.M., Usikov, A.S., Kartashova, A.P., Zybin, A.A., Kozlovski, V. V, Kudoyarov, M.F., Saharov, A. V, Oganesyan, A.G., Poloskin, D.S., Lundin, V. VDiversity of Properties of Device Structures Based on Group-III Nitrides, Related to Modification of the Fractal-Percolation System.2018. Semiconductors. 52 (7), pp. 942-949. 
30Привалов В.Е.A. B. Atkarskaya, S. Yu. Kabanov, V. E. Privalov, V. G. ShemaninThe Properties Difference of the Composites Based on the Float-Glass with the Bilateral Sol-Gel Films StudiesOptical Memory and Neural Networks 2018, v.27, №1, p.58-64 
31Привалов В.Е.Кожевников В.А, Привалов В.Е. Влияние геометрии сечения активного элемента лазера на усиление его излученияНТВ СПбПУ ФМ науки 2018, т.11, №2, с.84-95 
32Привалов В.Е.Привалов В.Е.Устройство для разложения водыПатент РФ 180441, БИ 2018, №17 
33Privalov V.E.Privalov, V.E., Shemanin, V.G.Estimation of the Error of Lidar Measurements of the Concentration of Hydrogen Sulfide in the Atmosphere.2018. Measurement Techniques. 61 (4), pp. 360-364. doi:10.1007/s11018-018-1434-1 (перевод из Измерительная техника 2018. №4, с.30-33) 
34Privalov V.E.Privalov, V.E., Shoidin, S.A., Trifanov, A. VForm factor and temporal coherence of laser radiation.2018. Journal of Optical Technology (A Translation of Opticheskii Zhurnal). 85 (9), pp. 541-545. (перевод из Оптический журнал 2018, т.85, №9, с.25-30) 
35Privalov V.E.V. E. Privalov, V. G. Shemanin, S.A.ShoydinHolograms form factor and the recording laser radiation mode structureOptical Memory and Neural Networks 2018, v.27, №3, p. 96-202 
36Privalov V.E.V. E. Privalov, V. G. ShemaninHydrogen sulfide molecules lidar sensing in the atmosphereOptical Memory and Neural Networks 2018, v.27, №2, p.120-131 
37Privalov V.E.Privalov, V.E., Shemanin, V.G.Hydrogen Sulfide Molecules Lidar Sensing in the Atmosphere.2018. Optical Memory and Neural Networks (Information Optics). 27 (2), pp. 120-131. 
38Privalov V.E.Privalov, V.E., Shemanin, V.G., Mkrtychev, O. VMethod of Assessing the Optical Resistance of an Irradiated Surface Under Laser Ablation. 2018.Measurement Techniques. 61 (7), pp. 694-698. (перевод из Измерительная техника 2018. №7, с34-37) 
39Privalov V.E.Privalov, V.E., Shemanin, V.G.Monitoring hydrogen sulfide molecules in the atmospheric boundary layer by differential absorption and scattering lidar from space.2018. Journal of Optical Technology (A Translation of Opticheskii Zhurnal). 85 (4), pp. 193-196. (перевод из Оптический журнал 2018, т.85, №4, с.49-52) 
40Privalov V.E.Privalov, V.E., Shemanin, V.G.The Sounding of Hydrogen Sulfide Molecules by the Raman Light Scattering Lidar Installed on a Flying Platform. 2018.Optics and Spectroscopy (English Translation of Optika i Spektroskopiya). 125 (4), pp. 590-593. (перевод из Оптика и спектроскопия 2018, т.125, №4, с.568-571) 
41Rodnyi P.A., Chernenko K.A., Venevtsev I.D.Rodnyi, P.A., Chernenko, K.A., Venevtsev, I.D.Mechanisms of ZnO Luminescence in the Visible Spectral Region.2018. Optics and Spectroscopy (English Translation of Optika i Spektroskopiya). 125 (3), pp. 372-378. 
42Свистунов Д.В.Свистунов Д.В.Принцип двухпотоковой передачи данных в перспективных оптоволоконных системах с модовым мультиплексированиемСборник трудов 13-й Международной конференции «Прикладная оптика -2018» (С. -Петербург, 19-21 Дек. 2018), т. 1, с. 167 (2018) 
43Svistunov D.V.Svistunov D.V.End-fire mode spectroscopy: a measuring technique for optical waveguidesEmerging Waveguide Technology. Ed. Kok Yeow You. – London: Intech Open, 2018. Chapter 14, pp. 259-276 DOI: 10. 5772/ intechopen. 75558 
44Svistunov D.V.A.A. Lipovskii, D.V. Svistunov, D.K. TagantsevEvaluation of diffusion activation energy in glasses from waveguide performances of planar structuresAdvances in Chemistry Research. Volume 46. Ed. James C. Taylor. – New York: Nova Science Publ., 2018. Chapter 6, pp. 181-202 ISBN: 978-1- 53614- 216-7 
45Тонков Д.Н.Тонков Д.Н., Мартынова О.А., Гасумянц В.Э.Влияние постростовой обработки на удельное сопротивление графенаМатериалы Двенадцатого Всероссийского форума студентов, аспирантов и молодых ученых. 2018. с.126-127. 
46Faradzheva M. P., Prikhod'ko A.V.Faradzheva, M., Prikhod'ko, A., Kon'kov, O.Specific features of the response of htsc structures to nanopulse actions. 2018.Proceedings of the 2018 IEEE International Conference on Electrical Engineering and Photonics, EExPolytech 2018. pp. 207-208. 
47Faradzheva M. P., Prikhod'ko A.V.Faradzheva, M.P., Prikhodko, A. V, Konkov, O.I., Faradzhev, S.P.The nanosecond studies of granular carbon nanostructures based on high temperature superconductors.2018. Journal of Physics: Conference Series. 1124 (8), . 
48Chaldyshev V. VChaldyshev, V. V, Kundelev, E. V, Poddubny, A.N., Vasil'ev, A.P., Yagovkina, M.A., Chend, Y., Maharjan, N., Liu, Z., Nakarmi, M.L., Shakya, N.M.Optical Properties of AlGaAs/GaAs Resonant Bragg Structure at the Second Quantum State.2018. Semiconductors. 52 (4), pp. 447-451. 
49Chernenko K.A., Gorokhova E.I., Venevtsev I.D.,Chernenko, K.A., Gorokhova, E.I., Eronko, S.B., Sandulenko, A. V, Venevtsev, I.D., Wieczorek, H., Rodnyi, P.A.Structural, Optical, and Luminescent Properties of ZnO:Ga and ZnO:In Ceramics.2018. IEEE Transactions on Nuclear Science. 65 (8), pp. 2196-2202. 
50Shtel'makh K.F.,Sobolev, N.A., Kalyadin, A.E., Shek, E.I., Shtel'makh, K.F., Gutakovskii, A.K., Vdovin, V.I., Mikhaylov, A.N., Tetel'Baum, D.I., Li, D., Yang, D., Fedina, L.I.Luminescent and Structural Properties of Electron-Irradiated Silicon Light-Emitting Diodes with Dislocation-Related Luminescence.2018. Materials Today: Proceedings. 5 (6), pp. 14772-14777. 
51Yakimenko A.N., Kozlovski V. VLebedev, A.A., Davydovskaya, K.S., Strel'chuk, A.M., Yakimenko, A.N., Kozlovski, V. VComparison of the effects of electron and proton irradiation on 4H-SiC and Si device structures.2018. Materials Science Forum. 924 MSF pp. 217-220. 

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