Detecting slow magnetization relaxation via magnetotransport measurements based on the current-reversal method

Fuente: arXiv
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Auteurs principaux: Beckert, Sebastian, Schlitz, Richard, Skobjin, Gregor, Badura, Antonin, Leiviskä, Miina, Kriegner, Dominik, Scheffler, Daniel, Sala, Giacomo, Olejník, Kamil, Michez, Lisa, Baltz, Vincent, Thomas, Andy, Reichlová, Helena, Goennenwein, Sebastian T. B.
Format: Preprint
Publié: 2024
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author Beckert, Sebastian
Schlitz, Richard
Skobjin, Gregor
Badura, Antonin
Leiviskä, Miina
Kriegner, Dominik
Scheffler, Daniel
Sala, Giacomo
Olejník, Kamil
Michez, Lisa
Baltz, Vincent
Thomas, Andy
Reichlová, Helena
Goennenwein, Sebastian T. B.
author_facet Beckert, Sebastian
Schlitz, Richard
Skobjin, Gregor
Badura, Antonin
Leiviskä, Miina
Kriegner, Dominik
Scheffler, Daniel
Sala, Giacomo
Olejník, Kamil
Michez, Lisa
Baltz, Vincent
Thomas, Andy
Reichlová, Helena
Goennenwein, Sebastian T. B.
contents Slow magnetization relaxation processes are an important time-dependent property of many magnetic materials. We show that magnetotransport measurements based on a well-established current-reversal method can be utilized to implement a simple and robust screening scheme for such relaxation processes. We demonstrate our approach considering the anomalous Hall effect in a Pt/Co/AlOx trilayer model system, and then explore relaxation in τ -MnAl films. Compared to magnetotransport experiments based on ac lock-in techniques, we find that the dc current-reversal method is particulary sensitive to relaxation processes with relaxation time scales on the order of seconds, comparable to the current-reversal measurement time scales.
format Preprint
id arxiv_https___arxiv_org_abs_2405_14460
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Detecting slow magnetization relaxation via magnetotransport measurements based on the current-reversal method
Beckert, Sebastian
Schlitz, Richard
Skobjin, Gregor
Badura, Antonin
Leiviskä, Miina
Kriegner, Dominik
Scheffler, Daniel
Sala, Giacomo
Olejník, Kamil
Michez, Lisa
Baltz, Vincent
Thomas, Andy
Reichlová, Helena
Goennenwein, Sebastian T. B.
Materials Science
Mesoscale and Nanoscale Physics
Slow magnetization relaxation processes are an important time-dependent property of many magnetic materials. We show that magnetotransport measurements based on a well-established current-reversal method can be utilized to implement a simple and robust screening scheme for such relaxation processes. We demonstrate our approach considering the anomalous Hall effect in a Pt/Co/AlOx trilayer model system, and then explore relaxation in τ -MnAl films. Compared to magnetotransport experiments based on ac lock-in techniques, we find that the dc current-reversal method is particulary sensitive to relaxation processes with relaxation time scales on the order of seconds, comparable to the current-reversal measurement time scales.
title Detecting slow magnetization relaxation via magnetotransport measurements based on the current-reversal method
topic Materials Science
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2405.14460