Ведущая организация | Федеральное государственное автономное образовательное учреждение высшего образования «Санкт-Петербургский политехнический университет Петра Великого»; ФГАОУ ВО СПбПУ (отзыв) Адрес: ул. Политехническая, д. 29 литера Б, Санкт-Петербург, 195251
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Адрес в сети Интернет: https://www.spbstu.ru Список основных публикаций работников ведущей организации по теме диссертации в рецензируемых научных изданиях за последние 5 лет: 1. Struchkov, A.I., Karabeshkin, K.V., Karaseov, P.A., Titov, A.I. Analysis of Individual Collision Cascade Parameters during Irradiation of Ga2O3 by Atomic and Molecular Ions Semiconductors, 2024, 58(3), с 279–283
2. Haurylavets, V.V., Ivanov, V.K., Korol, A.V., Solov'yov, A.V. Atomistic modelling of electron propagation and radiation emission in oriented bent ultra-thin Si and Ge crystals Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2024, 1058, 168917
3. Pukha, V.E., Glukhov, A.A., Belmesov, A.A., Khodos I.I., Mehdi, K., Kim, D.-E., Karaseov, P.A. Corrosion-resistant nanostructured carbon-based coatings for applications in fuel cells based on bipolar plates Vacuum, 2023, 218, 112643
4. Karaseov, P.A., Karabeshkin, K.V., Struchkov, A.I., Shakhmin A.L., Andreeva, V.D., Titov, A.I. Radiation Damage Accumulation in α-Ga2O3 under P and PF4 Ion Bombardment Semiconductors, 2023, 57(10), с. 459–464
5. Karasev, K.P., Strizhkin, D.A., Titov, A.I., Karaseov, P.A.Molecular-Dynamics Simulation of Silicon Irradiation with 2–8 keV C60 Fullerene Ions Journal of Surface Investigation, 2023, 17(1), с. 66–71
6. Azarov, A., Venkatachalapathy, V., Karaseov, P., Titov A.I., Struchkov, A., Kuznetsov, A. Interplay of the disorder and strain in gallium oxide Scientific Reports, 2022, 12(1), 15366
7. Titov, A.I., Karabeshkin, K.V., Struchkov, A.I., Nikolaev V.I., Azarov A., Gogova, D.S., Karaseov, P.A. “Comparative study of radiation tolerance of GaN and Ga2O3 polymorphs”, Vacuum, 2022, 200, 111005
8. Titov, A.I., Karabeshkin, K.V., Struchkov, A.I., Karaseov, P.A., Azarov, A. “Radiation tolerance of GaN: The balance between radiation-stimulated defect annealing and defect stabilization by implanted atoms” Journal of Physics D: Applied Physics, 2022, 55(17), 175103
9. Khadem M., Pukha V.E., Penkov O.V., Khodos I.I., Belmesov A.A., Nechaev G.V., Kabachkov E.N., Karaseov P.A., Kim D.-E. Formation of wear-resistant graphite/diamond-like carbon nanocomposite coatings on Ti using accelerated C60-ions Surface and Coatings Technology, 2021, 42425, Article number 127670 (12pp.)
10. Pavlov, A.V., Korol, A.V., Ivanov, V.K., Solov’yov, A.V. Channeling of electrons and positrons in straight and periodically bent diamond(110) crystals European Physical Journal D, 2020, 74(2), 21
11. A.I.Titov, P.A.Karaseov, K.V.Karabeshkin, A.I.Struchkov The formation of radiation damage in GaN during successive bombardment by light ions of various energies, Vacuum, 2020, 173, p. 109149
12. A.S.Kondrateva, Ya. Enns, A.Kazakin, R.Kleimanov, I.Morozov, P.A. Karaseov, M.V.Mishin, Electrooptical Properties of TiO2 Doped with Gold Nanoparticles Semiconductors, 2020, Vol. 54, No. 14, pp. 1885–1888 |
Оппоненты | - Ситников Александр Викторович, доктор физико-математических наук, профессор, федеральное государственное бюджетное образовательное учреждение высшего образования «Воронежский государственный технический университет», профессор кафедры твердотельной электроники (отзыв)
Наименования отрасли науки, научной специальности, по которым оппонентом защищена диссертация: 01.04.07 – Физика конденсированного состояния (физико-математические науки) Список основных публикаций официального оппонента по теме диссертации в рецензируемых научных изданиях за последние 5 лет: 1. Nikolaev, S. N.; Chernoglazov, K. Yu.; Emelyanov, A. V.; Sitnikov, A. V.; Taldenkov, A. N.; Patsaev, T. D.; Vasiliev, A. L.; Gan'shina, E. A.; Demin, V. A.; Averkiev, N. S.; Granovsky, A. B.; Rylkov, V. V. Anomalous Behavior of the Tunneling Magnetoresistance in (CoFeB)(x)(LiNbO3)(100-)(x)/Si Nanocomposite Film Structures Below the Percolation Threshold: Manifestations of the Cotunneling and Exchange Effects Jetp Letters,V.118 I.1 P.58-66 (2023) https://www.webofscience.com/wos/woscc/full-record/WOS:001049175400010 (WoS, IF= 0,33, Q4).
2. Domashevskaya, E. P.; Ivkov, S. A.; Seredin, P. V.; Goloshchapov, D. L.; Barkov, K. A.; Ryabtsev, S. V.; Segal, Yr. G.; Sitnikov, A. V.; Ganshina, E. A. Nonlinear Electromagnetic Properties of Thinfilm Nanocomposites (CoFeZr)(x)(MgF2)(100-x) Magnetochemistry, V. 9, I. 6 (2023) https://www.webofscience.com/wos/woscc/full-record/WOS:001017425200001 (WoS, IF= 0,42, Q2).
3. Q1 Matsukatova, Anna N.; Iliasov, Aleksandr I.;Nikiruy, Kristina E., Kukueva, Elena V.;Vasiliev, Aleksandr L, Goncharov, Boris V., Sitnikov, Aleksandr V., Zanaveskin, Maxim L., Bugaev, Aleksandr S., Demin, Vyacheslav A., Rylkov, Vladimir V., Emelyanov, Andrey V. Convolutional Neural Network Based on Crossbar Arrays of (Co-Fe-B)x(LiNbO3)100−x Nanocomposite Memristors Nanomaterials, 2022, 12(19), 3455 https://www.scopus.com/record/display.uri?eid=2-s2.0-85139904197&origin=resultslist&sort=plf-f (WoS, IF=6,9).
4. Drovosekov, A.B., Kreines, N.M., Kovalev, O.A., Sitnikov A.V., Nikolaev, S.N., Rylkov, V.V. Temperature Evolution of Magnetic Resonance Spectra in Metal–Insulator Nanogranular Composites with Paramagnetic Ions in an Insulating Matrix Journal of Experimental and Theoretical Physics, 2022, 135(3), pp. 372–376 https://www.scopus.com/record/display.uri?eid=2-s2.0-85140440143&origin=resultslist&sort=plf-f (Scopus, IF=2.2, Q3).
5. Nikolaev, S. N.; Chernoglazov, K. Yu.; Emelyanov, A. V.; Sitnikov, A. V.; Taldenkov, A. N.; Patsaev, T. D.; Vasiliev, A. L.; Gan'shina, E. A.; Demin, V. A.; Averkiev, N. S.; Granovsky, A. B.; Rylkov, V. V. Anomalous Behavior of the Tunneling Magnetoresistance in (CoFeB)(x)(LiNbO3)(100-)(x)/Si Nanocomposite Film Structures Below the Percolation Threshold: Manifestations of the Cotunneling and Exchange Effects Jetp Letters,V.118 I.1 P.58-66 (2023) https://www.webofscience.com/wos/woscc/full-record/WOS:001049175400010 (WoS, IF= 0,33, Q2).
6. Q1 Matsukatova, Anna N.; Iliasov, Aleksandr I.;Nikiruy, Kristina E., Kukueva, Elena V.;Vasiliev, Aleksandr L, Goncharov, Boris V., Sitnikov, Aleksandr V., Zanaveskin, Maxim L., Bugaev, Aleksandr S., Demin, Vyacheslav A., Rylkov, Vladimir V., Emelyanov, Andrey V. Convolutional Neural Network Based on Crossbar Arrays of (Co-Fe-B)x(LiNbO3)100−x Nanocomposite Memristors Nanomaterials, 2022, 12(19), 3455 https://www.scopus.com/record/display.uri?eid=2-s2.0-85139904197&origin=resultslist&sort=plf-f (WoS, IF=6,9).
7. Q1 (SJR) Domashevskaya, E.P., Mahdy, M.A., Ivkov, S.A., Sitnikov, A.V., Mahdy, I.A. Asymmetric magnetization reversal processes in amorphous composites (Fe40Co40B20)x(AL2O3)100-x Materials Chemistry and Physics, 2022, 277, 125480 https://www.scopus.com/record/display.uri?eid=2-s2.0-85120037024&origin=resultslist&sort=plf-f (Q2, WoS, IF=6.8 ).
8. Sitnikov, A.V., Babkina, I.V., Kalinin, Y.E., Shakurov, A.R., Rylkov, V.V. The Effect of Oxygen and Water Vapor on the Electric Properties of (Co40Fe40B20) x(LiNbO3)100 –x Nanogranular Composites Technical Physics, 2021, 66(12), pp. 1284–1293 https://www.scopus.com/record/display.uri?eid=2-s2.0-85124611193&origin=resultslist&sort=plf-f (Q3, Scopus, IF=1.3).
9. Q1 Domashevskaya, E.P, Ivkov, S.A., Sitnikov, A.V, Stogney, O.V., Kozakov, A. T., Nikolsky, A., V., Barkov, K. A., Builov, N. S. The features of CoFeZr alloy nanocrystals formation in film composites of (CoFeZr)(x)(MgF2)(100-x) Journal of Alloys and Compounds, V.870, 159398 (2021) https://www.sciencedirect.com/science/article/pii/S0925838821008070?via%3Dihub (WoS, IF = 5.316).
10. Q1 A.V. Emelyanov, K.E. Nikiruy, A.V. Serenko, A.V. Sitnikov, M.Yu. Presnyakov, R.B. Rybka, A.G. Sboev, V.V. Rylkov, P.K. Kashkarov, M.V. Kovalchuk, V.A. Demin. Self-adaptive STDP-based learning of a spiking neuron with nanocomposite memristive weights. Nanotechnology, V.31, 045201(10) (2020). https://doi.org/10.1088/1361-6528/ab4a6d (WoS, IF= 3.551).
11. A.B. Drovosekov, N.M. Kreines, A.S. Barkalova, S.N. Nikolaev, V.V. Rylkov, A.V. Sitnikov. Mechanisms of FMR line broadening in CoFeB-LiNbO3 granular films in the vicinity of metal-insulator transition. J. Magn. Magn. Mater. 495, 165875 (6) (2020). https://doi.org/10.1016/j.jmmm.2019.165875 (WoS, IF=3.046, Q2).
12. Q1 M.N. Martyshov, A.V. Emelyanov, V.A. Demin, K.E. Nikiruy, A.A. Minnekhanov, S.N. Nikolaev, A.N. Taldenkov, A.V. Ovcharov, M.Yu. Presnyakov, A.V. Sitnikov, A.L. Vasiliev, P.A. Forsh, A.B. Granovskiy, P.K. Kashkarov, M.V. Kovalchuk, V.V. Rylkov. Multifilamentary Character of Anticorrelated Capacitive and Resistive Switching in Memristive Structures Based on (Co−Fe−B)x(LiNbO3)100−x Nanocomposite. Phys. Rev. Applied 14, 034016 (2020). https://doi.org/10.1103/PhysRevApplied.14.034016 (WoS, IF = 4.194).
13. V.V. Rylkov, A.V. Emelyanov, S.N. Nikolaev, K.E. Nikiruy, A.V. Sitnikov, E.A. Fadeev, V.A. Demin, and A.B. Granovsky. Transport Properties of Magnetic Nanogranular Composites with Dispersed Ions in an Insulating Matrix (Review). J. Exp. Theor. Phys., V. 131, 160–176 (2020). https://doi.org/10.1134/S1063776120070109 (WoS, IF = 1.290, Q2).
14. S.N. Nikolaev, A.V. Emelyanov, R.G. Chumakov, V.V. Rylkov, A.V. Sitnikov, M.Yu. Presnyakov, E.V. Kukueva, V.A. Demin. The Properties of Memristive Structures Based on (Co40Fe40B20)x(LiNbO3)100–x Nanocomposites Synthesized on SiO2/Si Substrates. Tech. Phys. V. 65, 243–249 (2020). https://doi.org/10.1134/S1063784220020188 (WoS, IF= 0.654, Q3).
15. K.E. Nikiruy, A.I. Iliasov, A.V. Emelyanov, A.V. Sitnikov, V.V. Rylkov, V.A. Demin. Memristors Based on Nanoscale Layers LiNbO3 and (Co40Fe40B20)x(LiNbO3)100–x, Phys. Solid State V.62, 1732–1735 (2020). https://doi.org/10.1134/S1063783420090218 (WoS, IF = 0.895, Q3). - Хайбуллин Рустам Ильдусович, кандидат физико-математических наук, Казанский физико-технический институт им. Е.К. Завойского – обособленное структурное подразделение Федерального государственного бюджетного учреждения науки «Федеральный исследовательский центр «Казанский научный центр Российской академии наук», старший научный сотрудник лаборатории радиационной физики (отзыв)
Наименования отрасли науки, научной специальности, по которым оппонентом защищена диссертация: 01.04.02 - Теоретическая физика (физико-математические науки) Список основных публикаций официального оппонента по теме диссертации в рецензируемых научных изданиях за последние 5 лет: 1. Photoelectric and magnetic properties of Fe-hyperdoped Si layers formed by the recoil-atom implantation [Text] / R. Batalov, R. Bayazitov, I. Faizrakhmanov, R. Khaibullin, L. Tagirov, A. Gumarov, V. Vdovin // Materials Science in Semiconductor Processing. – 2020. – Vol. 105. – Art. 104752.
https://doi.org/10.1016/j.mssp.2019.104752
2. Iron-implanted epitaxial palladium thin films: Structure, ferromagnetism and signatures of spinodal decomposition [Text] / A.I. Gumarov, I.V. Yanilkin, R.V. Yusupov, A.G. Kiiamov, L.R. Tagirov, R.I. Khaibullin // Materials Letters. – 2021. – Vol. 305. – Art. 130783 (4 pages),
https://doi.org/10.1016/j.matlet.2021.130783
3. Exchange spin waves in thin films with gradient composition [Text] / I.A. Golovchanskiy, I.V. Yanilkin, A.I. Gumarov, B.F. Gabbasov, N.N. Abramov, R.V. Yusupov, R.I. Khaibullin, L. R. Tagirov // Physical Review Materials. – 2022. – Vol. 6, Iss.6. – Art. 064406 (8 pages).
https://doi.org/10.1103/PhysRevMaterials.6.064406
4. Endotaxial α-Fe Nanoparticles in the High-Fluence Iron-Implanted Single-Crystal MgO Crystal [Text] / A.L. Zinnatullin, B.F. Gabbasov, N.M. Lyadov, R.V. Yusupov, R.I. Khaibullin, F.G. Vagizov // Crystals. – 2022. –Vol.12, Iss.8. – Art. 1095 (7 pages). https://doi.org/10.3390/cryst12081095
5. Magnetic resonance studies of Ar-ion irradiated rutile [Text / A.A. Sukhanov, V.F. Valeev, V.I. Nuzhdin, R.I. Khaibullin // Magnetic Resonance in Solids. Electronic Journal. – 2023. – Vol. 25, Iss. 1– Art. 23102 (8 pages)
https://doi.org/10.26907/mrsej-23102
6. Ferromagnetism and Two Magnetic Phases in Rutile (TiO2) Implanted with Cobalt Ions: Effects of Substrate Temperature and Orientation [Text] / E.M. Begishev, I.R. Vakhitov, N.M. Lyadov, V.I. Nuzhdin, V.F. Valeev, V.V. Bazarov, D.M. Kuzina, R. I. Khaibullin // Bull. Russ. Acad. Sci. Phys. – 2023. – Vol. 87, Iss.3. – P.393-398.
https://doi.org/10.3103/S1062873822701337
7. Ion-beam synthesis of structure-oriented iron nanoparticles in single-crystalline rutile TiO2 [Text] / I.R. Vakhitov, N.M. Lyadov, V.I. Vdovin, A.K. Gutakovskii, V.I. Nuzhdin, L.R. Tagirov, R.I. Khaibullin // Crystals. – 2023. –Vol.13, Iss.2. – Art. 355 (13 pages).
https://doi.org/10.3390/cryst13020355
8. Unusual compositions of Fe-Nb alloy precipitates in iron-implanted LiNbO3 [Text] / A.L. Zinnatullin, A.V. Petrov, R.V. Yusupov, V.F. Valeev, R.I. Khaibullin, F.G. Vagizov // Magnetochemistry. – 2023. – Vol. 9, Iss. 5. – art. 121 (13 pages).
https://doi.org/10.3390/magnetochemistry9050121
9. Микроструктура тонких пленок железа с перпендикулярной магнитной анизотропией [Текст] / Н.М. Лядов, И.Р. Вахитов, А.И. Гумаров, И.А. Файзрахманов, Р.И. Хайбуллин // Физика твердого тела. – 2024. – Т. 66, Вып. 8. – С. 1372-1377.
https://journals.ioffe.ru/articles/58602
10. Microstructure and Unusual Ferromagnetism of Epitaxial SnO2 Films Heavily Implanted with Co Ions / R.I. Khaibullin, A.I. Gumarov, I.R. Vakhitov, A.A. Sukhanov, N.М. Lyadov, A.G. Kiiamov, D.M. Kuzina, V.V. Bazarov, A.L. Zinnatullin // Condens. Matter. – 2024. – Vol. 9, Iss. 2. – Art. 27 (15 pages).
https://doi.org/10.3390/condmat9020027
11. Artificial Synapses Based on HfOx/TiOy Memristor Devices for Neuromorphic Applications [Text] / B. Özkal, N. Al-Jawfi, G. Ekinci, B. Z. Rameev, R.I. Khaibullin, S. Kazan // Nanotechnology. – 2024. – Vol. 35, No. 50. – (Accepted Manuscript online: 10 October 2024)
https://iopscience.iop.org/article/10.1088/1361-6528/ad857f
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