V. Vasilevskii
Russian Academy of Sciences
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Featured researches published by V. Vasilevskii.
Physics of the Solid State | 1998
Yu. I. Bespyatykh; V. D. Kharitonov; V. Vasilevskii
The influence of surface-layer vortex pinning in a type-II superconductor on the propagation of surface magnetostatic waves in a ferromagnet-superconductor structure is analyzed. The pinning is assumed to be strong enough to prevent vortex displacement under the influence of the Lorentz force generated by the surface magnetostatic waves, so that the ground state of the superconductor is determined by the elastic properties of the vortex lattice and by pinning. In the given model the problem reduces to the analysis of the wave spectrum in the scattered field created by the disordered vortex surface layer. A calculation shows that the influence of this field on the surface magnetostatic-wave spectrum is slight and, hence, degradation of the shielding properties of the superconductor does not take place in the presence of strong vortex pinning (as opposed to the ferromagnet-ideal superconductor structure).
Physics of the Solid State | 1998
Yu. I. Bespyatykh; V. Vasilevskii; É. G. Lokk; V. D. Kharitonov
Specific models of domain walls are used to investigate conditions for the single-domain state and quasi-single-domain states in structures with magnetic materials having a quality factor higher than one. It is shown that the critical thickness of the magnetic film in a tangentially magnetized system decreases monotonically as the magnetizing field increases from zero to the transition from the collinear to the homogeneous angular phase and then increases monotonically with increasing external field. In a thin isolated magnetic film, the size of the domains increases exponentially with decreasing thickness. This dependence is logarithmic near the transition to the single-domain state for a film coated on two sides and obeys a power law for a film coated on one side. The establishment of a single-domain state and characteristic features in the asymptotic behavior of the domain structure in magnetic films with and without coatings can be attributed to differences in the asymptotic behavior of the field of a single domain wall.
Physics of the Solid State | 2003
Yu. I. Bespyatykh; I. E. Dikshtein; V. P. Mal’tsev; S. A. Nikitov; V. Vasilevskii
The general regularities of the evolution of the spectrum of magnetostatic waves in a periodic system composed of alternating ferromagnetic and nonmagnetic layers are analyzed. The spectrum of electromagnetic waves in an infinite periodic system and the coefficient of reflection of a plane electromagnetic wave from a half-space periodically filled with ferromagnetic and nonmagnetic layers are calculated. The dispersion relation is derived and analyzed for surface magnetostatic waves at the interface between the periodic system of layers and vacuum.
Journal of Communications Technology and Electronics | 2003
Yu. I. Bespyatykh; I. E. Dikshtein; V. P. Mal'tsev; V. Vasilevskii
Journal of Communications Technology and Electronics | 2003
Yu. I. Bespyatykh; I. E. Dikshtein; V. P. Mal'tsev; V. Vasilevskii; S. A. Nikitov
Journal of Communications Technology and Electronics | 2003
Yu. I. Bespyatykh; V. Vasilevskii; V. I. Voronov; S. A. Nikitov
Physics of Metals and Metallography | 1999
V. Vasilevskii; M. Gaidek; V. D. Kharitonov
Technical Physics Letters | 1996
Yu. I. Bespyatykh; V. Vasilevskii; V. D. Kharitonov; V. I. Shcheglov
Physics of the Solid State | 1996
Yu. I. Bespyatykh; V. D. Kharitonov; V. Vasilevskii; M. Gaidek
Technical Physics Letters | 1995
Yu. I. Bespyatykh; V. Vasilevskii; V. D. Kharitonov; V. I. Shcheglov