The influence of magnetic film anisotropy on the frequency-modulated signal detection

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Abstract

We studied the possibility of using a magnetostriction converter for detecting a microwave signal with frequency modulation. The magnetization vector and elastic displacement oscillations in a normally magnetized ferrite film with crystallographic anisotropy are considered. We analyzed the effect of crystallographic cell orientation on the nature of the magnetization dynamics and elastic displacement oscillations, the establishment of various oscillation modes, and the detection process.

About the authors

F. F. Asadullin

Saint Petersburg State Forestry University

Author for correspondence.
Email: aff@sfi.komi.com
Russia, 194021, St. Petersburg

D. A. Pleshev

Saint Petersburg State Forestry University; Syktyvkar State University

Email: aff@sfi.komi.com
Russia, 194021, St. Petersburg; Russia, 167001, Syktyvkar

V. S. Vlasov

Syktyvkar State University

Email: aff@sfi.komi.com
Russia, 167001, Syktyvkar

V. I. Shcheglov

Kotelnikov Institute of Radio Engineering and Electronics of the Russian Academy of Sciences

Email: aff@sfi.komi.com
Russia, 125009, Moscow

References

  1. Голямина И.П. Физика и техника мощного ультразвука. Кн. 1. Источники мощного ультразвука. М.: Наука, 1967. С. 111.
  2. Comstock R.L., LeCraw R.C. // J. Appl. Phys. 1963. V. 34. No. 10. P. 3022.
  3. Eshbach J.R. // JAP. 1963. V. 34. No. 4. P. 1298.
  4. Schlömann E., Joseph R.I., Kohane T. // Proc. IEEE. 1965. V. 53. No. 10. P. 1495.
  5. Семенцев Д.И., Шутый А.М. // УФН. 2007. Т. 177. № 8. С. 831; Sementsov D.I., Shutyi A.M. // Phys. Usp. 2007. V. 50. P. 793.
  6. Гуляев Ю.В., Зильберман П.Е., Темирязев А.Г., Тихомирова М.П. // ФТТ. 2000. Т. 42. № 6. С. 1062; Gulyaev Yu.V., Zil’berman P.E., Temiryazev A.G., Tikhomirova M.P. // Phys. Solid State. 200. V. 42. No. 6. P. 1094.
  7. Kirushev M.S., Vlasov V.S., Kotov L.N. et al. // Solid State Phenom. 2015. V. 233–234. P. 73.
  8. Chang C.L., Tamming R.R., Broomhall T.J., Janusonis J. // Phys. Rev. Appl. 2018. V. 10. No. 3. Art. No. 034068.
  9. Wei-Gang Yang, Holger Schmidt // Appl. Phys. Rev. 2021. V. 8. Art. No. 021304.
  10. Локк Э.Г., Герус С.В., Анненков А.Ю. // Радиотехн. и электрон. 2018. Т. 63. № 10. С. 1089; Lokk E.G., Gerus S.V., Annenkov A.Yu. // J. Commun. Technol. Electron. 2018. V. 63. No. 10. P. 1197.
  11. Чупров И.А., Асадуллин Ф.Ф., Плешев Д.А. и др. // Челябин. физ.-мат. журн. 2021. Т. 6. № 2. С. 237.
  12. Плешев Д.А., Асадуллин Ф.Ф., Власов В.С. и др. // Физ. мет. и металловед. 2022. Т. 123. № 3. С. 320; Pleshev D.A., Asadullin F.F., Vlasov V.S. et al. // Phys. Metal. Metallogr. 2022. V. 123. No. 3. P. 276.
  13. Власов В.С., Плешев Д.А., Шавров В.Г., Щеглов В.И. // Журн. радиоэлектрон. 2020. № 7. С. 8.

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Copyright (c) 2023 Ф.Ф. Асадуллин, Д.А. Плешев, В.С. Власов, В.И. Щеглов