English

Integral Absorption of Microwave Power by Random-Anisotropy Magnets

Materials Science 2025-02-14 v1

Abstract

We study analytically and numerically on lattices containing 10510^5 spins, the integral absorption of microwaves by a random-anisotropy magnet, dωP(ω)\int d\omega P(\omega). It scales as DR2/JD^2_R/J on the random-anisotropy strength DRD_R and the strength of the ferromagnetic exchange JJ in low-anisotropy amorphous magnetic materials. At high anisotropy and in low-anisotropy materials sintered of sufficiently large ferromagnetic grains, the integral power scales linearly on DRD_R. The maximum bandwidth, combined with the maximum absorption power, is achieved when the amorphous structure factor, or grain size, is of an order of the domain wall thickness in a conventional ferromagnet that is of the order of (J/DR)1/2(J/D_R)^{1/2} lattice spacings.

Keywords

Cite

@article{arxiv.2304.04121,
  title  = {Integral Absorption of Microwave Power by Random-Anisotropy Magnets},
  author = {E. M. Chudnovsky and D. A. Garanin},
  journal= {arXiv preprint arXiv:2304.04121},
  year   = {2025}
}

Comments

9 pages, 5 figure captions