International Scientific Publications
© 2007-2026 Science Events Ltd
Warunki użytkowania  ·  Polityka prywatności
Language English French Polish Romanian Bulgarian
Conference room
Materials, Methods & Technologies 2026, 28th International Conference
13-16 August, Burgas, Bulgaria
Call for Papers

Materials, Methods & Technologies, Volume 11, 2017

MICROWAVE ABSORPTION OF ELECTROMAGNETIC RADIATION IN THIN MAGNETIC FILMS AND FENI –BASED MULTILAYERED STRUCTURES DESIGNED FOR APPLICATIONS
Sergei V. Shcherbinin, Stanislav O. Volchkov, Andrey V. Svalov, Galina V. Kurlyandskaya
Strony: 138-150
Opublikowano: 29 Jul 2017
Wyświetlenia: 2,687
Pobrania: 405
Citations: 2 (Google Scholar)
Citations: 2 (OpenAlex)
Streszczenie: Thin magnetic films and multilayered structures are of specific interest for the development of small magnetic field detectors and biosensors. Some of these devices are operating in the microwave range in other cases characterization by microwave techniques is necessary to gain the material understanding. We consider the resonance absorption of electromagnetic waves in the microwave range, depending on the composition of the magnetron sputtered FeNi-based magnetic films suitable for magnetoimpedance sensor applications. Particular attention is paid to the matching of the high-frequency path for multilayers.
Słowa kluczowe: magnetic multilayers, giant magnetoimpedance, microwave absorption, ferromagnetic resonance, magnetic field sensors
Cytowanie artykułu: Sergei V. Shcherbinin, Stanislav O. Volchkov, Andrey V. Svalov, Galina V. Kurlyandskaya. MICROWAVE ABSORPTION OF ELECTROMAGNETIC RADIATION IN THIN MAGNETIC FILMS AND FENI –BASED MULTILAYERED STRUCTURES DESIGNED FOR APPLICATIONS. Journal of International Scientific Publications: Materials, Methods & Technologies 11, 138-150 (2017). https://www.scientific-publications.net/en/article/1001461/
Powrót do spisu treści tomu

Submit Feedback

We value your input! Use this form to report any concerns or provide feedback on our published articles. All submissions will be kept confidential.