Spin current symmetries generated by GdFeCo ferrimagnet across its magnetisation compensation temperature

Fuente: arXiv
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Main Authors: Damas, Héloïse, Hehn, Michel, Rojás-Sanchez, Juan-Carlos, Petit-Watelot, Sébastien
Format: Preprint
Published: 2025
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author Damas, Héloïse
Hehn, Michel
Rojás-Sanchez, Juan-Carlos
Petit-Watelot, Sébastien
author_facet Damas, Héloïse
Hehn, Michel
Rojás-Sanchez, Juan-Carlos
Petit-Watelot, Sébastien
contents Ferrimagnets, composed of antiferromagnetically coupled magnetic sublattices whose net magnetisation can be tuned by temperature, offer a unique platform for probing the symmetry of the spin currents they generate and for identifying the sublattice contributions to these currents. Here, we investigate the spin current symmetries produced by GdFeCo ferrimagnet at a fixed concentration and across a broad temperature range, including the magnetisation compensation point. Using complementary techniques based on spin-torque ferromagnetic resonance spectroscopy, we separate the contributions of the spin Hall effect (SHE) and the spin anomalous Hall effect (SAHE). We show that the torques arising from both mechanisms retain their sign across the magnetisation compensation temperature, and that the SAHE-driven damping-like torque has the opposite sign to the SHE-driven term. We suggest that both effects originates from distinct electronic subsystems: the SHE emerging from Gd 5d electrons, and the SAHE from FeCo 3d electrons. Consequently, the SHE sign remains insensitive to the magnetisation state, whereas the SAHE sign does not invert at compensation, reproducing our observations. Together, these insights clarify the interplay between sublattices in ferrimagnetic spin transport and highlight the potential of ferrimagnetic spin currents to generate spin torques in adjacent layers or within the ferrimagnet itself.
format Preprint
id arxiv_https___arxiv_org_abs_2511_20379
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Spin current symmetries generated by GdFeCo ferrimagnet across its magnetisation compensation temperature
Damas, Héloïse
Hehn, Michel
Rojás-Sanchez, Juan-Carlos
Petit-Watelot, Sébastien
Mesoscale and Nanoscale Physics
Materials Science
Ferrimagnets, composed of antiferromagnetically coupled magnetic sublattices whose net magnetisation can be tuned by temperature, offer a unique platform for probing the symmetry of the spin currents they generate and for identifying the sublattice contributions to these currents. Here, we investigate the spin current symmetries produced by GdFeCo ferrimagnet at a fixed concentration and across a broad temperature range, including the magnetisation compensation point. Using complementary techniques based on spin-torque ferromagnetic resonance spectroscopy, we separate the contributions of the spin Hall effect (SHE) and the spin anomalous Hall effect (SAHE). We show that the torques arising from both mechanisms retain their sign across the magnetisation compensation temperature, and that the SAHE-driven damping-like torque has the opposite sign to the SHE-driven term. We suggest that both effects originates from distinct electronic subsystems: the SHE emerging from Gd 5d electrons, and the SAHE from FeCo 3d electrons. Consequently, the SHE sign remains insensitive to the magnetisation state, whereas the SAHE sign does not invert at compensation, reproducing our observations. Together, these insights clarify the interplay between sublattices in ferrimagnetic spin transport and highlight the potential of ferrimagnetic spin currents to generate spin torques in adjacent layers or within the ferrimagnet itself.
title Spin current symmetries generated by GdFeCo ferrimagnet across its magnetisation compensation temperature
topic Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2511.20379