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  • Archive: 2015
22 Dec 2015
  • 2015
  • V. 14
  • 3-4
  • (p.201 - 214)

Engineering microwave properties of microwires

CZU: 537.622

Authors:

Baranov, Serghei

Summary:

A correlation between the frequency of natural ferromagnetic resonance (NFMR) (1−12 GHz) determined from the dispersion of permeability and alloy composition (or magnetostriction between 1 and 40 ppm) of glass-coated microwires has been systematically confirmed. Absorption of composite (microwire pieces embedded in a polymer matrix) screens has been experimentally investigated. Parallel theoretical studies suggest that a significant fraction of the absorption can be ascribed to a geometrical resonant effect, while a concentration effect is expected for the thinnest microwires.

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BibTeX

@article{ibn_43550,
author = {Baranov, S.A.},
title = {Engineering microwave properties of microwires},
journal = {Moldavian Journal of the Physical Sciences},
year = {2015},
volume = {14 (3-4)},
pages = {201-214},
month = {Dec},
abstract = {(EN) A correlation between the frequency of natural ferromagnetic resonance (NFMR) (1−12 GHz) determined from the dispersion of permeability and alloy composition (or magnetostriction between 1 and 40 ppm) of glass-coated microwires has been systematically confirmed. Absorption of composite (microwire pieces embedded in a polymer matrix) screens has been experimentally investigated. Parallel theoretical studies suggest that a significant fraction of the absorption can be ascribed to a geometrical resonant effect, while a concentration effect is expected for the thinnest microwires. },
url = {https://ibn.idsi.md/vizualizare_articol/43550},
keywords = {Amorphous magnetic microwires, Ferromagnetic resonance, Natural ferromagnetic resonance, high frequency properties}
}

DataCite

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<publisher>Instrumentul Bibliometric National</publisher>
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<subjects>
<subject>Amorphous magnetic microwires</subject>
<subject>Ferromagnetic resonance</subject>
<subject>Natural ferromagnetic resonance</subject>
<subject>high frequency properties</subject>
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Dublin Core

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<dc:creator>Baranov, S.A.</dc:creator>
<dc:date>2015-12-22</dc:date>
<dc:description xml:lang='en'>A correlation between the frequency of natural ferromagnetic resonance (NFMR) (1−12 GHz) determined from the dispersion of permeability and alloy composition (or magnetostriction between 1 and 40 ppm) of glass-coated microwires has been systematically confirmed. Absorption of composite (microwire pieces embedded in a polymer matrix) screens has been experimentally investigated. Parallel theoretical studies suggest that a significant fraction of the absorption can be ascribed to a geometrical resonant effect, while a concentration effect is expected for the thinnest microwires. </dc:description>
<dc:source>Moldavian Journal of the Physical Sciences 14 (3-4) 201-214</dc:source>
<dc:subject>Amorphous magnetic microwires</dc:subject>
<dc:subject>Ferromagnetic resonance</dc:subject>
<dc:subject>Natural ferromagnetic resonance</dc:subject>
<dc:subject>high frequency properties</dc:subject>
<dc:title>Engineering microwave properties of microwires</dc:title>
<dc:type>info:eu-repo/semantics/article</dc:type>
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BARANOV, S.. Engineering microwave properties of microwires. In: Moldavian Journal of the Physical Sciences. 2015, nr. 3-4(14), pp. 201-214. ISSN 1810-648X.

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Keywords

  • Amorphous magnetic microwires
  • Natural ferromagnetic resonance
  • high frequency properties
  • Ferromagnetic resonance
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