The origin of g $\approx$ 4 EPR line in magnetic nanocomposites: Manifestation of double quantum transitions in ferromagnetic granules

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Drovosekov, A. B., Dmitrieva, M. Yu., Sitnikov, A. V., Nikolaev, S. N., Rylkov, V. V.
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866910540989726720
author Drovosekov, A. B.
Dmitrieva, M. Yu.
Sitnikov, A. V.
Nikolaev, S. N.
Rylkov, V. V.
author_facet Drovosekov, A. B.
Dmitrieva, M. Yu.
Sitnikov, A. V.
Nikolaev, S. N.
Rylkov, V. V.
contents Films of metal-insulator nanogranular composites M$_x$D$_{100-x}$ with different compositions and atomic percentage of metal and dielectric phases (M = Fe, Co, Ni, CoFeB; D = Al$_2$O$_3$, SiO$_2$, ZrO$_2$; x $\approx$ 15-60 at.%) are investigated by electron magnetic resonance in a wide range of frequencies (f = 7-37 GHz) and temperatures (T = 4.2-360 K). At concentrations of the metallic ferromagnetic phase below the percolation threshold, the experimental spectra, besides the conventional ferromagnetic resonance signal, demonstrate an additional absorption peak characterized by a double effective g-factor g $\approx$ 4. The appearance of such a peak in the resonance spectra and its unusual properties are explained in the framework of the quantum mechanical "giant spin" model by the excitation of "forbidden" ("double quantum") transitions in magnetic nanogranules with a change of the spin projection $Δm = \pm2$.
format Preprint
id arxiv_https___arxiv_org_abs_2406_04799
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The origin of g $\approx$ 4 EPR line in magnetic nanocomposites: Manifestation of double quantum transitions in ferromagnetic granules
Drovosekov, A. B.
Dmitrieva, M. Yu.
Sitnikov, A. V.
Nikolaev, S. N.
Rylkov, V. V.
Materials Science
Films of metal-insulator nanogranular composites M$_x$D$_{100-x}$ with different compositions and atomic percentage of metal and dielectric phases (M = Fe, Co, Ni, CoFeB; D = Al$_2$O$_3$, SiO$_2$, ZrO$_2$; x $\approx$ 15-60 at.%) are investigated by electron magnetic resonance in a wide range of frequencies (f = 7-37 GHz) and temperatures (T = 4.2-360 K). At concentrations of the metallic ferromagnetic phase below the percolation threshold, the experimental spectra, besides the conventional ferromagnetic resonance signal, demonstrate an additional absorption peak characterized by a double effective g-factor g $\approx$ 4. The appearance of such a peak in the resonance spectra and its unusual properties are explained in the framework of the quantum mechanical "giant spin" model by the excitation of "forbidden" ("double quantum") transitions in magnetic nanogranules with a change of the spin projection $Δm = \pm2$.
title The origin of g $\approx$ 4 EPR line in magnetic nanocomposites: Manifestation of double quantum transitions in ferromagnetic granules
topic Materials Science
url https://arxiv.org/abs/2406.04799