Features of the Rotational Kinetic of Magnetic Fluid Nanoparticles

The results of theoretical and experimental studies of the effect of the perturbation of magnetization of magnetic fluid in the initial part of magnetization curve, caused by thermal oscillations in the adiabatic sound wave are considered. The measurements were carried out on the magnetic colloid sa...

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Main Authors: A.M. Storozhenko, P.A. Ryapolov, A.O. Tantsyura, V.M. Polunin, I.M. Aref'ev, T.A. Aref'eva, Yu.B. Kazakov, Yu.A. Neruchev, V.I. Korotkovskii
Format: Article
Language:English
Published: Sumy State University 2014-07-01
Series:Журнал нано- та електронної фізики
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Online Access:http://jnep.sumdu.edu.ua/download/numbers/2014/3/articles/jnep_2014_V6_03056.pdf
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author A.M. Storozhenko
P.A. Ryapolov
A.O. Tantsyura
V.M. Polunin
I.M. Aref'ev
T.A. Aref'eva
Yu.B. Kazakov
Yu.A. Neruchev
V.I. Korotkovskii
author_facet A.M. Storozhenko
P.A. Ryapolov
A.O. Tantsyura
V.M. Polunin
I.M. Aref'ev
T.A. Aref'eva
Yu.B. Kazakov
Yu.A. Neruchev
V.I. Korotkovskii
author_sort A.M. Storozhenko
collection DOAJ
description The results of theoretical and experimental studies of the effect of the perturbation of magnetization of magnetic fluid in the initial part of magnetization curve, caused by thermal oscillations in the adiabatic sound wave are considered. The measurements were carried out on the magnetic colloid samples with different viscosity of the dispersion medium within the frequency band of 20-60 kHz. In this frequency band, studied samples are characterized by the absence of thermal relaxation of the magnetization. The comparison of the conclusions of the model of thermal relaxation of magnetization and the experimental results makes it possible to obtain information about the features of the rheology for the nearest molecular environment of a particle − nanorheology.
format Article
id doaj-art-54645d7a35824ae2a7919d2c4cb26d77
institution DOAJ
issn 2077-6772
language English
publishDate 2014-07-01
publisher Sumy State University
record_format Article
series Журнал нано- та електронної фізики
spelling doaj-art-54645d7a35824ae2a7919d2c4cb26d772025-08-20T03:20:14ZengSumy State UniversityЖурнал нано- та електронної фізики2077-67722014-07-016303056-103056-4Features of the Rotational Kinetic of Magnetic Fluid NanoparticlesA.M. Storozhenko0P.A. Ryapolov1A.O. Tantsyura2V.M. Polunin3I.M. Aref'ev4T.A. Aref'eva5Yu.B. Kazakov6Yu.A. Neruchev7V.I. Korotkovskii8Southwest State University, Kursk, RussiaSouthwest State University, Kursk, RussiaSouthwest State University, Kursk, RussiaSouthwest State University, Kursk, RussiaIvanovo State Power University named after V.I. Lenin, Ivanovo, RussiaIvanovo State Power University named after V.I. Lenin, Ivanovo, RussiaIvanovo State Power University named after V.I. Lenin, Ivanovo, RussiaKursk State University, Kursk, RussiaKursk State University, Kursk, RussiaThe results of theoretical and experimental studies of the effect of the perturbation of magnetization of magnetic fluid in the initial part of magnetization curve, caused by thermal oscillations in the adiabatic sound wave are considered. The measurements were carried out on the magnetic colloid samples with different viscosity of the dispersion medium within the frequency band of 20-60 kHz. In this frequency band, studied samples are characterized by the absence of thermal relaxation of the magnetization. The comparison of the conclusions of the model of thermal relaxation of magnetization and the experimental results makes it possible to obtain information about the features of the rheology for the nearest molecular environment of a particle − nanorheology.http://jnep.sumdu.edu.ua/download/numbers/2014/3/articles/jnep_2014_V6_03056.pdfMagnetic fluidAcoustomagnetic effectRelaxation of magnetizationMagnetic nanoparticleMagnetization curv
spellingShingle A.M. Storozhenko
P.A. Ryapolov
A.O. Tantsyura
V.M. Polunin
I.M. Aref'ev
T.A. Aref'eva
Yu.B. Kazakov
Yu.A. Neruchev
V.I. Korotkovskii
Features of the Rotational Kinetic of Magnetic Fluid Nanoparticles
Журнал нано- та електронної фізики
Magnetic fluid
Acoustomagnetic effect
Relaxation of magnetization
Magnetic nanoparticle
Magnetization curv
title Features of the Rotational Kinetic of Magnetic Fluid Nanoparticles
title_full Features of the Rotational Kinetic of Magnetic Fluid Nanoparticles
title_fullStr Features of the Rotational Kinetic of Magnetic Fluid Nanoparticles
title_full_unstemmed Features of the Rotational Kinetic of Magnetic Fluid Nanoparticles
title_short Features of the Rotational Kinetic of Magnetic Fluid Nanoparticles
title_sort features of the rotational kinetic of magnetic fluid nanoparticles
topic Magnetic fluid
Acoustomagnetic effect
Relaxation of magnetization
Magnetic nanoparticle
Magnetization curv
url http://jnep.sumdu.edu.ua/download/numbers/2014/3/articles/jnep_2014_V6_03056.pdf
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