Calculation of the Amplitude of Acoustic Waves in Nanoscale Magnets in an Alternating Magnetic Field Caused by Displacements of Domain Boundaries
УДК 534.2
Abstract
This paper proposes an algorithm that utilizes a macroscopic approach to calculate the amplitude of the total acoustic signal generated by an alternating magnetic field in ribbon-shaped nanocrystalline magnets (NCMs) with polydomain nanofibers at reversible displacements of domain boundaries. The calculations are made for the case with the wave vector directed along the magnetic field parallel to the tape plane. At the same time, the influence of anharmonicity on the displacements of the domain boundaries is considered for the carrier frequency. The orientation and frequency dependences for the wave vector and the signal absorption coefficient are found under the assumption that the rotation processes can be neglected.
It is shown that the residual internal stresses in the (poly- or monodomain) nanograin NCMs have a significant effect on the absorption coefficient and the amplitude of the generated DG signal.
The magnetic anisotropy constants decrease along with the size of the nanograins. In this case, the generation process due to the rotation of the spontaneous magnetization vectors is also significant, which must be considered in relation to the displacement processes.
The proposed algorithm for calculating the amplitudes of the signals generated by a nanocrystalline magnet can be used to predict the friction properties of the developed promising NCM and calculate the amplitudes of the generated signals at the carrier frequency and harmonics.
Downloads
Metrics
References
Пятаков А.П. Магнитное общество. Бюллетень. 2007. Т. 8. № 1.
Матренин С.В., Овечкин Б.Б. Наноматериалы и наноустройства на их основе // Управление качеством. 2017. № 7.
Золотухин И.В., Калинин Ю.Е., Стогней О.В. Новые направления физического материаловедения : учеб. пособие. Воронеж, 2000.
Komina O.Y., Zhukov E.A., Adam ova M.E., Scherbakov Y.I., Zhukova VI. Interaction of domain wall with magnetic fields and acoustic waves in yttrium orthoferrite // Proceedings of IFOST-2016. 11th International Forum on Strategic Techno-logy IFOST-2016. 2016. DOI: 10.1109/IFOST.2016.7884060.
Komina O.Y., Zhukov E.A. Influence of Constant Magnetic Field on Domain Wall Dynamics in YFeO3 // Solid State Phenomena. Vol. 265. 2017. DOI: 10.4028/www.scientific. net/SSP.265.636.
Hollander R.B., Muller C., McCord J. Magnetic domain walls as broadband spin wave and elastic magnetisation wave emitters // Scientific Reports 8 (1). 2018. DOI: 10.1038/s41598-018-31689-8.
Pyatakov A.P., Sergeev A.S., Sechin D.A., Meshkov G.A., Nikolaeva E.P., Nikolaev A.V, Logginov A.S., Zvezdin A.K. Magnetic domain wall motion triggered by electric field // Journal of Physics: Conference Series. 2010. Vol. 200. № SECTION 3. DOI: 10.1088/1742-6596/200/3/032059.
Yuan S.W., Bertram H.N. Magnetic thin film domain wall motion under dynamic fields // Journal of Applied Physics. Vol. 72. 1992. DOI: 10.1063/1.351829.
Родионов А.А. Релаксационные эффекты в ферромагнетиках в сложных полях : дисс. ... д-ра физ.-мат. наук. Курск, 1994.
Петрова Л.П., Новичкова Т.А., Игнатенко Н.М. Макроскопический подход при описании упругих и неупругих свойств нанокристаллических магнетиков // Известия Юго-Западного гос. ун-та. Серия : Техника и технологии. 2014. № 4.
Родионов А.А., Петрова Л.П. Генерация гармоник в магнетиках доменными границами // Известия КурскГТУ. 2001. № 6.
Родионов А. А., Игнатенко Н. М., Петрова Л. П. Генерация упругих волн в магнетиках в переменных магнитных полях : сб. трудов XI сессии Росс. акуст. общ. М., 2001. Т. 2.
Copyright (c) 2021 Людмила Павловна Петрова, Николай Михайлович Игнатенко, Андрей Сергеевич Громков
This work is licensed under a Creative Commons Attribution 4.0 International License.
Izvestiya of Altai State University is a golden publisher, as we allow self-archiving, but most importantly we are fully transparent about your rights.
Authors may present and discuss their findings ahead of publication: at biological or scientific conferences, on preprint servers, in public databases, and in blogs, wikis, tweets, and other informal communication channels.
Izvestiya of Altai State University allows authors to deposit manuscripts (currently under review or those for intended submission to Izvestiya of Altai State University) in non-commercial, pre-print servers such as ArXiv.
Authors who publish with this journal agree to the following terms:
- Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution License (CC BY 4.0) that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.
- Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (See The Effect of Open Access).