A. D. Kudakov
Moscow State University
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Featured researches published by A. D. Kudakov.
Journal of Magnetism and Magnetic Materials | 1995
V.E. Zubov; A. D. Kudakov; N. L. Levshin; V.V. Pilipenko
Abstract Motion of a single 180-degree domain wall in perfect monocrystals of iron was investigated in a vacuum cell by a magnetooptic method with micron-resolution. It was found, that the relaxation frequency of the domain wall increased by more than one order with the decrease of the air pressure from 10 5 to 10 3 Pa.
Journal of Magnetism and Magnetic Materials | 1996
Dong Ying Bi; V.E. Zubov; A. D. Kudakov
Abstract We describe a new method of measuring hysteresis loops from local areas of the surface of a ferromagnet, based on the employment in a magneto-optical micromagnetometer of new linear magneto-optical effects in reflected light: the meridional and polar intensity magneto-optical effects. High-sensitivity measurements of magnetization curves are achieved using the modulation of the plane of light polarization.
Journal of Magnetism and Magnetic Materials | 1996
V.E. Zubov; A. D. Kudakov; N. L. Levshin; V.V. Pilipenko
Abstract An essential distinction between the surface and volume dynamic properties of 180° domain walls in iron whiskers that is not explained by the existent theory is determined. With the help of magneto-optical investigations in a vacuum cell, it is established that the reason for the abnormal behaviour of domain walls is the physical adsorption of molecules contained in the air on the whisker surface.
Journal of Experimental and Theoretical Physics | 2013
V.E. Zubov; A. D. Kudakov; N. L. Levshin; M. A. Vlasov
The reversible change in the domain structure and the magnetic domain width in bismuth-containing iron garnet films with an easy magnetization axis oriented normal to their surface during adsorption caused by hydrogen bonds is studied by a magnetooptical method. The dependence of the domain width on the vapor pressure of methyl alcohol or water in a cell with a sample is determined, and the time dependence of the domain width induced by the adsorption-desorption processes occurring between methyl alcohol molecules or water molecules on the film surface is studied. A model is proposed to explain the detected effects.
Jetp Letters | 2011
V.E. Zubov; A. D. Kudakov; N. L. Levshin; M.Yu. Gusev; N. S. Neustroev
It has been found using the Faraday-effect magneto-optic method that the width of magnetic domains of the labyrinth domain structure in bismuth-containing iron garnet films with perpendicular anisotropy changes considerably after the adsorption of methanol molecules. A maximum change in domain width of 50% has been observed in methanol saturated vapor. This effect is reversible. A decrease in domain width under adsorption has been attributed to a decrease in the effective constant of the perpendicular magnetic anisotropy of the film caused by the adsorption of methanol molecules.
Jetp Letters | 2000
V.E. Zubov; A. D. Kudakov; T. S. Fedulova
On soft magnetic amorphous specimens, a rapid decrease in the surface amplitude of 180° domain wall oscillations relative to the bulk amplitude is observed with increasing frequency of the magnetizing field. The dynamics of the domain wall is studied by a magnetooptical method at the specimen surface and by the induction method in the bulk. The results of the experiment disagree with the theory, which takes into account the effect of eddy currents and predicts that, with increasing frequency, the surface amplitude of the domain wall oscillations should decrease slower than the bulk amplitude. The observed behavior of the domain wall is explained by its interaction with macroscopic defects at the specimen surface. This interaction gives rise to unsteady chaotic surface wall displacements, which lead to an increase by several orders of magnitude in the effective surface damping parameter in the Landau-Lifshits equation.
Jetp Letters | 2000
V.E. Zubov; A. D. Kudakov; N. L. Levshin; T. S. Fedulova
It was found that physisorbed water molecules affect the near-surface dynamics of a 180° domain wall in an amorphous FeCuNbSiB ferromagnet. In the range of water vapor pressures 400–1300 Pa, the oscillating domain walls suffer enhanced damping in the near-surface region and reduce their relaxation frequency from 10 to 4 kHz. This effect is explained by the influence of surface magnetic defects arising due to the pressure produced by the clusters of physisorbed water molecules on the walls of micropores at the magnet surface.
Jetp Letters | 2017
V.E. Zubov; A. D. Kudakov; N. L. Levshin; I. A. Belov; M. B. Strugatskii
A change in the quasistatic magnetic susceptibility in thin plates of iron borate (FeBO3), which is a weak ferromagnet, has been revealed at adsorption of water molecules. The measurements have been performed at room temperature with the use of the magneto-optical Faraday effect. The change of the susceptibility in saturated water vapors is about 30%. The observed effect is reversible. The time of establishing the susceptibility after the introduction of water vapors is 1.5 min, which is twice as large as the time of establishing the susceptibility after the evacuation. The effect is explained by the appearance of uniaxial surface magnetic anisotropy in the basal plane because of the adsorption of water molecules.
Solid State Phenomena | 2012
V.E. Zubov; A. D. Kudakov; N.L. Levsнin; M.Yu. Gusev; N. S. Neustroev
Due to water molecules adsorption the reversible change of domains width and domain structure reconstruction in bismuth-doped ferrite-garnet thin films with perpendicular magnetic anisotropy was observed. The change of domains width was 15% in saturated water vapor at room temperature. The decrease of domains width is explained by the reduction of effective perpendicular magnetic anisotropy constant due to water molecules adsorption.
Solid State Phenomena | 2009
V.E. Zubov; A. D. Kudakov; N. L. Levshin; N.A. Mezenkov
Influence of water molecules reversible adsorption on domain structure and domain wall structure in amorphous Fe-rich ferromagnet samples is investigated by magnetooptical method. Before investigation the samples were kept in the air. Domain structure of the samples significantly changes in wacuum: instead one 180-degree domain wall several domain walls appear which are oriented with angle 45o to the long side of the sample. This effect is completely reversible. Another new effect is found: domain wall width on the sample surface in vacuum is 35% bigger (13.5 µm) than in atmosphere of water vapor (10 µm).