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Publications in Math-Net.Ru |
Citations |
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2026 |
| 1. |
M. E. Seleznev, S. L. Vysotsky, G. M. Amahanov, Yu. V. Nikulin, “Inverse spin Hall effect in structures based on yttrium iron garnet films with reduced saturation magnetization”, Zhurnal Tekhnicheskoi Fiziki, 96:3 (2026), 575–581 |
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2025 |
| 2. |
S. L. Vysotsky, M. E. Seleznev, G. M. Amahanov, Yu. V. Nikulin, V. K. Sakharov, “Spin wave propagation in a tangentially magnetized Lu$_{2.1}$Bi$_{0.9}$Fe$_5$O$_{12}$ film”, Fizika Tverdogo Tela, 67:7 (2025), 1279–1283 |
| 3. |
S. L. Vysotskii, M. E. Seleznev, G. M. Amakhanov, Yu. V. Nikulin, “Influence of crystallographic anisotropy of unsaturated yttrium iron garnet film on spin injection in platinum film by the mechanism of inverse spin Hall effect”, Izv. Sarat. Univ. Physics, 25:1 (2025), 44–52 |
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2024 |
| 4. |
V. K. Sakharov, Yu. V. Khivintsev, Yu. V. Nikulin, M. E. Seleznev, Yu. A. Filimonov, “Magnetostatic surface waves losses caused by spin pumping in the ferrite/metal structure”, Fizika Tverdogo Tela, 66:7 (2024), 1088–1092 |
| 5. |
S. L. Vysotsky, Yu. V. Nikulin, G. M. Dudko, V. K. Sakharov, A. V. Kozhevnikov, M. E. Seleznev, Yu. V. Khivintsev, A. G. Khitun, S. A. Nikitov, Yu. A. Filimonov, “The effect of van Hove singularities on spin pumping in the magnonic crystal/normal metal structure”, Fizika Tverdogo Tela, 66:7 (2024), 1068–1074 |
| 6. |
S. L. Vysotsky, M. E. Seleznev, Yu. V. Nikulin, A. V. Kozhevnikov, G. M. Amahanov, A. G. Temiryazev, “Detection of spin-wave excitations of a domain structure in an yttrium-iron garnet film using the inverse spin Hall effect”, Fizika Tverdogo Tela, 66:7 (2024), 1057–1061 |
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| 7. |
V. K. Sakharov, Yu. V. Khivintsev, A. S. Dzhumaliev, Yu. V. Nikulin, A. V. Kozhevnikov, Yu. A. Filimonov, “Channeling of magnetostatic surface waves by decoration of ferrite films with metals”, Izv. Sarat. Univ. Physics, 24:1 (2024), 76–87 |
| 8. |
M. E. Seleznev, G. M. Dudko, Yu. V. Nikulin, Yu. V. Khivintsev, V. K. Sakharov, A. V. Kozhevnikov, S. L. Vysotsky, Yu. A. Filimonov, “Detection of focused beams of surface magnetostatic waves in YIG / Pt structures”, Izvestiya VUZ. Applied Nonlinear Dynamics, 32:3 (2024), 405–418 |
| 9. |
Yu. V. Nikulin, Yu. V. Khivintsev, M. E. Seleznev, S. L. Vysotsky, V. K. Sakharov, A. V. Kozhevnikov, G. M. Dudko, A. G. Khitun, S. A. Nikitov, Yu. A. Filimonov, “Spin pumping in YIG/Pt structures: role of van Hove singularities”, Pis'ma v Zh. Èksper. Teoret. Fiz., 119:9 (2024), 676–683 ; JETP Letters, 119:9 (2024), 688–695 |
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2023 |
| 10. |
V. K. Sakharov, Yu. V. Khivintsev, A. S. Dzhumaliev, Yu. V. Nikulin, M. E. Seleznev, Yu. A. Filimonov, “Propagation of spin waves in channels formed by decoration of the surfaces of yttrium-iron garnet films by thin metal areas”, Fizika Tverdogo Tela, 65:7 (2023), 1186–1193 |
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| 11. |
Yu. V. Nikulin, A. V. Kozhevnikov, S. L. Vysotsky, A. G. Temiryazev, M. E. Seleznev, Yu. V. Khivintsev, Yu. A. Filimonov, “EMF generation by magnetostatic waves in the YIG(111)-Pt structure in weak bias fields”, Fizika Tverdogo Tela, 65:7 (2023), 1180–1185 |
| 12. |
Yu. V. Nikulin, S. L. Vysotsky, M. E. Seleznev, A. V. Kozhevnikov, V. K. Sakharov, G. M. Dudko, Yu. V. Khivintsev, Yu. A. Filimonov, “Frequency dependence of the spin mixing conductance of YIG|Pt structures upon MSSW spin pumping”, Fizika Tverdogo Tela, 65:6 (2023), 967–972 |
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| 13. |
I. N. Mikhailov, Yu. V. Nikulin, S. S. Volchkov, M. Yu. Vasilkov, N. A. Malofeeva, I. D. Kosobudskii, N. M. Ushakov, “Optical spectroscopy of nanoporous membranes based on anodic alumina in an ammonia gas flow”, Izv. Sarat. Univ. Physics, 23:3 (2023), 209–220 |
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| 14. |
M. E. Seleznev, Yu. V. Nikulin, Yu. V. Khivintsev, S. L. Vysotsky, A. V. Kozhevnikov, V. K. Sakharov, G. M. Dudko, Yu. A. Filimonov, “Influence of parametric instability on spin pumping by dipole-exchange magnetostatic surface waves in YIG-pt structures”, Izvestiya VUZ. Applied Nonlinear Dynamics, 31:2 (2023), 225–242 |
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2022 |
| 15. |
Yu. V. Nikulin, A. V. Kozhevnikov, S. L. Vysotsky, M. E. Seleznev, Yu. V. Khivintsev, Yu. A. Filimonov, “Investigation of the interference of magnetostatic surface waves using the inverse spin Hall effect”, Fizika Tverdogo Tela, 64:9 (2022), 1293–1297 |
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| 16. |
A. V. Kozhevnikov, S. L. Vysotsky, G. M. Dudko, Yu. V. Khivintsev, Yu. V. Nikulin, Yu. A. Filimonov, “Magnetic sensor based on spin waves”, Fizika Tverdogo Tela, 64:9 (2022), 1238–1242 |
| 17. |
M. E. Seleznev, Yu. V. Nikulin, Yu. V. Khivintsev, S. L. Vysotsky, A. V. Kozhevnikov, V. K. Sakharov, G. M. Dudko, E. S. Pavlov, Yu. A. Filimonov, “Influence of three-magnon decays on electromotive force generation by magnetostatic surface waves in integral YIG - Pt structures”, Izvestiya VUZ. Applied Nonlinear Dynamics, 30:5 (2022), 617–643 |
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| 18. |
G. M. Dudko, A. V. Kozhevnikov, V. K. Sakharov, M. E. Seleznev, Yu. V. Khivintsev, Yu. V. Nikulin, S. L. Vysotsky, Yu. A. Filimonov, S. A. Nikitov, A. Khitun, “Micromagnetic simulation of a “majority” logic gate based on the interference of spin waves’ caustics”, Zhurnal Tekhnicheskoi Fiziki, 92:8 (2022), 1151–1158 |
| 19. |
M. Yu. Vasilkov, I. N. Mikhailov, Yu. V. Nikulin, S. S. Volchkov, D. A. Zimnyakov, N. M. Ushakov, “Spectral optical properties of ceramic nanoporous membranes based on anodic aluminium oxide coated silver in ammonia vapors”, Optics and Spectroscopy, 130:2 (2022), 305–310 |
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2021 |
| 20. |
Yu. V. Nikulin, A. V. Kozhevnikov, Yu. V. Khivintsev, M. E. Seleznev, Yu. A. Filimonov, “Negative magnetoresistance in the $n$-InSb/YIG structure”, Fizika Tverdogo Tela, 63:9 (2021), 1253–1257 ; Phys. Solid State, 63:10 (2021), 1496–1500 |
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| 21. |
A. V. Kozhevnikov, G. M. Dudko, Yu. V. Khivintsev, V. K. Sakharov, S. L. Vysotsky, Yu. V. Nikulin, M. E. Seleznev, A. G. Khitun, Yu. A. Filimonov, “Effect of probing signal on the output signals spectrum of nonlinear spin waves in a cross based on waveguides of iron-yttrium garnet film”, Izvestiya VUZ. Applied Nonlinear Dynamics, 29:5 (2021), 812–828 |
| 22. |
M. E. Seleznev, Yu. V. Nikulin, V. K. Sakharov, Yu. V. Khivintsev, A. V. Kozhevnikov, S. L. Vysotsky, Yu. A. Filimonov, “Influence of the resonant interaction of surface magnetostatic waves with exchange modes on the EMF generation in YIG/Pt structures”, Zhurnal Tekhnicheskoi Fiziki, 91:10 (2021), 1504–1508 |
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2020 |
| 23. |
A. V. Kozhevnikov, G. M. Dudko, Y. V. Khivintsev, V. K. Sakharov, S. L. Vysotskii, Y. V. Nikulin, E. S. Pavlov, A. G. Khitun, Y. A. Filimonov, “Magnetic field direction influence on the spectrum of spin waves output signals at three-magnon decay of magnetostatic surface waves in a cross based on waveguides of yttrium iron garnet film”, Izvestiya VUZ. Applied Nonlinear Dynamics, 28:2 (2020), 168–185 |
| 24. |
S. L. Vysotsky, Yu. V. Nikulin, A. V. Kozhevnikov, Yu. V. Khivintsev, V. K. Sakharov, A. S. Dzhumaliev, Yu. A. Filimonov, A. I. Stognij, S. A. Nikitov, “Magnetoelastic properties of yttrium–iron garnet films manufactured by means of ion-beam sputtering onto Si and GaAs substrates”, Zhurnal Tekhnicheskoi Fiziki, 90:7 (2020), 1221–1226 ; Tech. Phys., 65:7 (2020), 1175–1180 |
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| 25. |
Yu. V. Nikulin, M. E. Seleznev, Yu. V. Khivintsev, V. K. Sakharov, E. S. Pavlov, S. L. Vysotskii, A. V. Kozhevnikov, Yu. A. Filimonov, “EMF generation by propagating magnetostatic surface waves in integrated thin-film Pt/YIG structure”, Fizika i Tekhnika Poluprovodnikov, 54:12 (2020), 1401 ; Semiconductors, 54:12 (2020), 1721–1724 |
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| 26. |
M. I. Shishkin, Yu. V. Nikulin, E. S. Prikhozhdenko, “Properties of films based on nanosize and submicrometer InSb particles passivated with CdS”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 46:20 (2020), 7–10 ; Tech. Phys. Lett., 46:10 (2020), 1000–1003 |
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2019 |
| 27. |
Yu. V. Khivintsev, G. M. Dudko, V. K. Sakharov, Yu. V. Nikulin, Yu. A. Filimonov, “Propagation of spin waves in microstructures based on yttrium–iron garnet films decorated by a ferromagnetic metal”, Fizika Tverdogo Tela, 61:9 (2019), 1664–1671 ; Phys. Solid State, 61:9 (2019), 1614–1621 |
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| 28. |
A. V. Kozhevnikov, Yu. V. Khivintsev, V. K. Sakharov, G. M. Dudko, S. L. Vysotsky, Yu. V. Nikulin, E. S. Pavlov, Yu. A. Filimonov, A. G. Khitun, “The effect of parametric processes on the propagation of spin waves in cross-shaped structures based on waveguides from yttrium iron garnet films”, Izvestiya VUZ. Applied Nonlinear Dynamics, 27:3 (2019), 9–32 |
| 29. |
A. G. Temiryazev, M. P. Temiryazeva, A. V. Zdoroveyshchev, O. V. Vikhrova, Yu. V. Nikulin, Yu. V. Khivintsev, S. A. Nikitov, “Formation of magnetic nanostructures using an atomic force microscope probe”, Zhurnal Tekhnicheskoi Fiziki, 89:11 (2019), 1807–1812 ; Tech. Phys., 64:11 (2019), 1716–1721 |
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| 30. |
A. G. Veselov, V. I. Elmanov, O. A. Kiryasova, Yu. V. Nikulin, “Dependence of texture tilt and excitation efficiency of shear waves for ZnO films on working gas pressure in a DC magnetron system”, Zhurnal Tekhnicheskoi Fiziki, 89:5 (2019), 781–787 ; Tech. Phys., 64:5 (2019), 730–736 |
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2018 |
| 31. |
A. S. Dzhumaliev, Yu. V. Nikulin, Yu. A. Filimonov, “Influence of annealing and argon pressure on the microcrystalline structure of magnetron-sputtered textured cobalt films”, Zhurnal Tekhnicheskoi Fiziki, 88:11 (2018), 1734–1742 ; Tech. Phys., 63:11 (2018), 1678–1686 |
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| 32. |
A. G. Veselov, V. I. Elmanov, O. A. Kiryasova, Yu. V. Nikulin, “Effect of material of metal sublayer and deposition configuration on the texture formation in the piezoactive ZnO films”, Zhurnal Tekhnicheskoi Fiziki, 88:1 (2018), 98–106 ; Tech. Phys., 63:1 (2018), 95–103 |
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| 33. |
V. A. Emelichev, Yu. V. Nikulin, “On some type of stability for multicriteria integer linear programming problem of finding extremum solutions”, Taurida Journal of Computer Science Theory and Mathematics, 2018, no. 2, 17–28 |
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2017 |
| 34. |
A. S. Dzhumaliev, Yu. V. Nikulin, “Influence of argon pressure on texture and microstructure of cobalt films produced by Dc-sputtering”, Izv. Sarat. Univ. Physics, 17:4 (2017), 254–262 |
| 35. |
A. S. Dzhumaliev, Yu. V. Nikulin, “Magnetic properties of textured NiFe(111) and NiFe(200) films”, Izv. Sarat. Univ. Physics, 17:4 (2017), 242–253 |
| 36. |
A. G. Veselov, V. I. Elmanov, O. A. Kiryasova, Yu. V. Nikulin, “Damping of longitudinal and shear acoustic waves in a structure with ZnO films with straight and inclined textures”, Zhurnal Tekhnicheskoi Fiziki, 87:3 (2017), 448–452 ; Tech. Phys., 62:3 (2017), 470–474 |
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2016 |
| 37. |
A. S. Dzhumaliev, Yu. V. Nikulin, Yu. A. Filimonov, “Effect of bias voltage polarity of a substrate on the texture, microstructure, and magnetic properties of Ni films prepared by magnetron sputtering”, Fizika Tverdogo Tela, 58:6 (2016), 1206–1215 ; Phys. Solid State, 58:6 (2016), 1247–1256 |
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| 38. |
A. S. Dzhumaliev, Yu. V. Nikulin, Yu. A. Filimonov, “Deposition of NiFe(200) and NiFe(111) textured films onto Si/SiO$_{2}$ substrates by DC magnetron sputtering”, Fizika Tverdogo Tela, 58:5 (2016), 1019–1023 ; Phys. Solid State, 58:5 (2016), 1053–1057 |
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| 39. |
A. S. Dzhumaliev, Yu. V. Nikulin, Yu. A. Filimonov, “Formation of textured Ni(200) and Ni(111) films by magnetron sputtering”, Zhurnal Tekhnicheskoi Fiziki, 86:6 (2016), 126–131 ; Tech. Phys., 61:6 (2016), 924–928 |
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| 40. |
Yu. V. Nikulin, A. S. Dzhumaliev, Yu. A. Filimonov, “Influence of the working gas pressure on the magnetic properties and texture of magnetron-sputtered Fe/SiO$_{2}$/Si(100) polycrystalline films”, Zhurnal Tekhnicheskoi Fiziki, 86:5 (2016), 141–144 ; Tech. Phys., 61:5 (2016), 779–782 |
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2014 |
| 41. |
A. S. Dzhumaliev, Yu. V. Nikulin, Yu. A. Filimonov, “Magnetron sputtering of thin Cu(200) films on Ni(200)/SiO$_2$/Si substrates”, Zhurnal Tekhnicheskoi Fiziki, 84:7 (2014), 152–155 ; Tech. Phys., 59:7 (2014), 1097–1100 |
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2013 |
| 42. |
A. S. Dzhumaliev, Yu. V. Nikulin, Yu. A. Filimonov, “The formation of the (200) and (110) textures in iron films prepared by magnetron sputtering”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 39:21 (2013), 10–17 ; Tech. Phys. Lett., 39:11 (2013), 938–941 |
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