The electrodynamic analysis of propagation constants of electromagnetic waves in 3D magnetic nanowire lattices under the magnetic resonance conditions at microwaves
- 作者: Makeeva G.S.1, Golovanov O.A.2
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隶属关系:
- Penza State University
- Penza Artillery Engineer Institute
- 期: 卷 61, 编号 1 (2016)
- 页面: 1-9
- 栏目: Electrodynamics and Wave Propagation
- URL: https://journals.rcsi.science/1064-2269/article/view/196693
- DOI: https://doi.org/10.1134/S1064226915110145
- ID: 196693
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详细
Periodic 3G lattices made of oriented magnetic nanowires are considered under the magnetic resonance in the millimeter-wavelength range. The propagation of electromagnetic waves in anisotropic nanostructured materials based on these lattices is mathematically modeled using the method of autonomous blocks with virtual Floquet channels. The real and imaginary parts of propagation coefficients of longitudinal (clockwiseand counterclockwise polarized) and transverse (ordinary and extraordinary) waves for the zero spatial harmonic of 26 GHz are electrodynamically calculated. These waves propagate in 3D lattices of magnetic (Co80Ni20, Fe) nanowires. The obtained results depend on the intensity of the external constant magnetic field and the lattice period. The methods of control of the frequency dispersion in the millimeter-wavelength range under the influence of the external magnetic field and under the change of the geometry of lattices are determined. It is considered that the direction and intensity of the magnetic bias, its orientation with respect to the nanowire axis, and the mutual orientation of the constant and high-frequency magnetic fields vary.
作者简介
G. Makeeva
Penza State University
编辑信件的主要联系方式.
Email: radiotech@pnzgu.ru
俄罗斯联邦, Krasnaya ul. 40, Penza, 440026
O. Golovanov
Penza Artillery Engineer Institute
Email: radiotech@pnzgu.ru
俄罗斯联邦, Penza-5, 440005
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