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Specific features of the interaction of microwave radiation with magnetic colloids

We study, both experimentally and theoretically, propagation of electromagnetic waves in the microwave range (10.5 GHz) through homogeneous magnetic colloids in a magnetic field. The studies were carried out with partial filling of a rectangular waveguide with tested samples, namely, colloids with m...

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Главные авторы: Turkin, S. D., Туркин, С. Д., Dikansky, Y. I., Диканский, Ю. И.
格式: Статья
語言:English
出版: Springer 2022
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在線閱讀:https://dspace.ncfu.ru/handle/20.500.12258/18616
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spelling ir-20.500.12258-186162022-02-16T12:36:17Z Specific features of the interaction of microwave radiation with magnetic colloids Turkin, S. D. Туркин, С. Д. Dikansky, Y. I. Диканский, Ю. И. Electromagnetic wave propagation Magnetic field Electromagnetic waves Magnetite We study, both experimentally and theoretically, propagation of electromagnetic waves in the microwave range (10.5 GHz) through homogeneous magnetic colloids in a magnetic field. The studies were carried out with partial filling of a rectangular waveguide with tested samples, namely, colloids with magnetite single-domain particles and kerosene as a dispersion medium. The features of the dependences of the transmission coefficient of microwave radiation on the external magnetic field for various volume concentrations of the dispersed phase in the sample are revealed. The model of an ensemble of noninteracting particles was used to interpret the results we obtained. The concentration limits of applicability of the model have been determined. 2022-02-01T08:07:00Z 2022-02-01T08:07:00Z 2022 Статья Turkin, S. D., Dikansky, Y. I. Specific features of the interaction of microwave radiation with magnetic colloids // Radiophysics and Quantum Electronics. - 2022. - Volume 64. - No. 4. - Pages 251 - 259 - DOI10.1007/s11141-021-10128-1 http://hdl.handle.net/20.500.12258/18616 en Radiophysics and Quantum Electronics application/pdf application/pdf Springer
institution СКФУ
collection Репозиторий
language English
topic Electromagnetic wave propagation
Magnetic field
Electromagnetic waves
Magnetite
spellingShingle Electromagnetic wave propagation
Magnetic field
Electromagnetic waves
Magnetite
Turkin, S. D.
Туркин, С. Д.
Dikansky, Y. I.
Диканский, Ю. И.
Specific features of the interaction of microwave radiation with magnetic colloids
description We study, both experimentally and theoretically, propagation of electromagnetic waves in the microwave range (10.5 GHz) through homogeneous magnetic colloids in a magnetic field. The studies were carried out with partial filling of a rectangular waveguide with tested samples, namely, colloids with magnetite single-domain particles and kerosene as a dispersion medium. The features of the dependences of the transmission coefficient of microwave radiation on the external magnetic field for various volume concentrations of the dispersed phase in the sample are revealed. The model of an ensemble of noninteracting particles was used to interpret the results we obtained. The concentration limits of applicability of the model have been determined.
format Статья
author Turkin, S. D.
Туркин, С. Д.
Dikansky, Y. I.
Диканский, Ю. И.
author_facet Turkin, S. D.
Туркин, С. Д.
Dikansky, Y. I.
Диканский, Ю. И.
author_sort Turkin, S. D.
title Specific features of the interaction of microwave radiation with magnetic colloids
title_short Specific features of the interaction of microwave radiation with magnetic colloids
title_full Specific features of the interaction of microwave radiation with magnetic colloids
title_fullStr Specific features of the interaction of microwave radiation with magnetic colloids
title_full_unstemmed Specific features of the interaction of microwave radiation with magnetic colloids
title_sort specific features of the interaction of microwave radiation with magnetic colloids
publisher Springer
publishDate 2022
url https://dspace.ncfu.ru/handle/20.500.12258/18616
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AT dikanskyyi specificfeaturesoftheinteractionofmicrowaveradiationwithmagneticcolloids
AT dikanskijûi specificfeaturesoftheinteractionofmicrowaveradiationwithmagneticcolloids
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