ferrite film,
ferrite structure,
magnon crystal,
spin wave,
nonreciprocal properties,
spin wave field lines,
dispersion dependence,
isofrequency dependence,
spin wave distribution measurement,
demagnetizing factor,
magnetic flux density.
UDC:
, 537.624, 537.632
Subject:
Microwave spinwave electronics, magnetic waves in ferrites, digital information storage devices, operator control systems
Biography
I Graduated from MIPT in (1971) and completed postgraduate studies at MIPT with a dissertation and the degree of Candidate of Physical and Mathematical Sciences (1974). I have been working at FIRE RAS since 1974. In 2010 I defended my doctoral dissertation in Physics of Magnetic Phenomena. I have more than 200 scientific papers.
Main publications:
\begin{thebibliography}{9}
\Bibitem{1}
\by Alexander Yu. Annenkov, Sergey V. Gerus and Edwin H. Lock
\paper Superdirectional beam of surface spin wave
\paperinfo doi: 10.1209/0295-5075/123/44003
\jour EPL
\yr 2018
\vol 123
\issue 44003
\Bibitem{2}
\by A. Yu. Annenkov and S. V. Gerus
\paper The Influence of Dissipation on the Dispersion Characteristics of Surface Spin Waves
\paperinfo DOI: 10.1134/S1064226918090036
\jour Journal of Communications Technology and Electronics
\yr 2018
\vol 63
\issue 9
\pages 1027–1034
\Bibitem{3}
\by Lokk E.G., Gerus S.V., Annenkov A.Y.
\paper Characteristics of spin surface waves in a tangentially magnetized metal–dielectric–ferrite–dielectric–metal structure
\jour J. Commun. Technol. Electron.
\yr 2018
\vol 63
\issue 10
\pages 1197-1205
\Bibitem{4}
\by E. H. Lock, A. V. Lugovskoi and S. V. Gerus
\paper Relation between the Poynting and Group Velocity Vectors of Electromagnetic Waves in a Bi-Gyrotropic Medium
\paperinfo DOI: 10.1134/S106422692107007X
\jour Journal of Communications Technology and Electronics
\yr 2021
\vol 66
\issue 7
\pages 662–672
\Bibitem{5}
\by S. V. Gerus, E. G. Lokk, and A. Yu. Annenkov
\paper Effect of Nonuniform Magnetic Field That Magnetizes a Ferrite Film on the Measurement Accuracy for Characteristics of Spin Waves
\paperinfo ISSN 1064-2269
\jour Journal of Communications Technology and Electronics
\yr 2021
\vol 66
\issue 12
\pages 1378–1384
E. H. Lock, S. V. Gerus, A. V. Sadovnikov, “Superresolution effect and resolvability criterion for the waves in anisotropic media”, UFN, 196:4 (2026), 403–421; Phys. Usp., 69:4 (2026), 375–391
2024
2.
E. H. Lock, S. V. Gerus, “Electromagnetic waves in a tangentially magnetized bi-gyrotropic layer (with an example of analysis of spin wave characteristics in a ferrite plate)”, UFN, 194:12 (2024), 1330–1344; Phys. Usp., 67:12 (2024), 1257–1270
V. V. Dementienko, V. B. Dorokhov, S. V. Gerus, A. G. Markov, V. M. Shakhnarovich, “On the efficiency of driver state monitoring systems”, Zhurnal Tekhnicheskoi Fiziki, 77:6 (2007), 103–108; Tech. Phys., 52:6 (2007), 781–786
A. V. Voronenko, S. V. Gerus, “DIFRACTION OF VOLUME MAGNETOSTATIC WAVES ON A MAGNETIC LATTICE IN THE
BRAGG REGIME”, Zhurnal Tekhnicheskoi Fiziki, 57:9 (1987), 1841–1843
1986
5.
A. V. Voronenko, S. V. Gerus, “Diffraction of surface magnetostatic waves on magnetic lattices in the Raman–Nath regime”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 12:10 (1986), 632–635
1984
6.
A. V. Voronenko, S. V. Gerus, “INTERACTION OF SURFACE MAGNETOSTATIC WAVES WITH SPATIAL-PERIODICAL
MAGNETIC-FIELDS”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 10:12 (1984), 746–748
1983
7.
V. D. Kharitonov, S. V. Gerus, “On Damon–Eshbach wave damping in thick ferromagnetic slabs with magnetic inhomogenities”, Fizika Tverdogo Tela, 25:1 (1983), 290–291
2022
8.
S. V. Gerus, E. H. Lock, “Experimental methods for the study of spin waves”, Izvestiya VUZ. Applied Nonlinear Dynamics, 30:5 (2022), 520–533