Optically excited spin dynamics of thermally metastable skyrmions in Fe$_{0.75}$Co$_{0.25}$Si

Fuente: arXiv
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Main Authors: Kalin, Jantje, Sievers, Sibylle, Füser, Heiko, Schumacher, Hans Werner, García-Sánchez, Felipe, Bauer, Andreas, Pfleiderer, Christian, Bieler, Mark
Format: Preprint
Published: 2022
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author Kalin, Jantje
Sievers, Sibylle
Füser, Heiko
Schumacher, Hans Werner
García-Sánchez, Felipe
Bauer, Andreas
Pfleiderer, Christian
Bieler, Mark
author_facet Kalin, Jantje
Sievers, Sibylle
Füser, Heiko
Schumacher, Hans Werner
García-Sánchez, Felipe
Bauer, Andreas
Pfleiderer, Christian
Bieler, Mark
contents We investigate the microwave spin excitations of the cubic chiral magnet Fe$_{0.75}$Co$_{0.25}$Si as driven by the thermal modulation of magnetic interactions via laser heating and probed by time-resolved measurements of the magneto-optical Kerr effect. Focusing on the topologically nontrivial skyrmion lattice state, the dynamic properties in thermodynamic equilibrium are compared with those of a metastable state prepared by means of rapid field cooling. In both cases, we find precessional and exponential contributions to the dynamic response, characteristic of a breathing mode and energy dissipation, respectively. When taking into account the universal scaling as a function of temperature, the precession frequencies in the equilibrium and metastable skyrmion state are in excellent quantitative agreement. This finding highlights that skyrmion states far from thermal equilibrium promise great flexibility, for instance with respect to temperature and field scales, both for possible microwave applications and the study of fundamental properties.
format Preprint
id arxiv_https___arxiv_org_abs_2202_04182
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Optically excited spin dynamics of thermally metastable skyrmions in Fe$_{0.75}$Co$_{0.25}$Si
Kalin, Jantje
Sievers, Sibylle
Füser, Heiko
Schumacher, Hans Werner
García-Sánchez, Felipe
Bauer, Andreas
Pfleiderer, Christian
Bieler, Mark
Mesoscale and Nanoscale Physics
Applied Physics
We investigate the microwave spin excitations of the cubic chiral magnet Fe$_{0.75}$Co$_{0.25}$Si as driven by the thermal modulation of magnetic interactions via laser heating and probed by time-resolved measurements of the magneto-optical Kerr effect. Focusing on the topologically nontrivial skyrmion lattice state, the dynamic properties in thermodynamic equilibrium are compared with those of a metastable state prepared by means of rapid field cooling. In both cases, we find precessional and exponential contributions to the dynamic response, characteristic of a breathing mode and energy dissipation, respectively. When taking into account the universal scaling as a function of temperature, the precession frequencies in the equilibrium and metastable skyrmion state are in excellent quantitative agreement. This finding highlights that skyrmion states far from thermal equilibrium promise great flexibility, for instance with respect to temperature and field scales, both for possible microwave applications and the study of fundamental properties.
title Optically excited spin dynamics of thermally metastable skyrmions in Fe$_{0.75}$Co$_{0.25}$Si
topic Mesoscale and Nanoscale Physics
Applied Physics
url https://arxiv.org/abs/2202.04182