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Publications in Math-Net.Ru |
Citations |
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2022 |
1. |
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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2021 |
2. |
Yu. V. Khivintsev, A. V. Kozhevnikov, V. K. Sakharov, G. M. Dudko, E. S. Pavlov, S. L. Vysotsky, Yu. A. Filimonov, “Effects of geometry of thin-film microwaveguides based on yttrium iron garnet and position of microantennas on characteristics of excitation and transmission of magnetostatic waves in them”, Izv. Sarat. Univ. Physics, 21:3 (2021), 249–263 |
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2020 |
3. |
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 |
4. |
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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2019 |
5. |
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 |
6. |
S. L. Vysotsky, E. S. Pavlov, A. V. Kozhevnikov, G. M. Dudko, Yu. A. Filimonov, A. I. Stognij, R. Marcelli, S. A. Nikitov, “Self-action effects in the propagation of surface magnetostatic wave pulses in a magnonic crystal–dielectric–metal structure”, Zhurnal Tekhnicheskoi Fiziki, 89:11 (2019), 1719–1725 ; Tech. Phys., 64:11 (2019), 1629–1635 |
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2017 |
7. |
E. S. Pavlov, S. L. Vysotsky, A. V. Kozhevnikov, G. M. Dudko, Yu. A. Filimonov, “Influence of parametric instability of magnetostatic surface spin waves on formation of defect modes in one-dimensional magnonic crystal with defect”, Izvestiya VUZ. Applied Nonlinear Dynamics, 25:2 (2017), 74–88 |
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2015 |
8. |
S. A. Nikitov, D. V. Kalyabin, I. V. Lisenkov, A. N Slavin, Yu. N. Barabanenkov, S. A. Osokin, A. V. Sadovnikov, E. N. Beginin, M. A. Morozova, Yu. P. Sharaevsky, Yu. A. Filimonov, Yu. V. Khivintsev, S. L. Vysotsky, V. K. Sakharov, E. S. Pavlov, “Magnonics: a new research area in spintronics and spin wave electronics”, UFN, 185:10 (2015), 1099–1128 ; Phys. Usp., 58:10 (2015), 1002–1028 |
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