Article Large anomalous Hall effect in spin fluctuating devil’s staircase

Naoki Abe ; Yuya Hano ; Hiroaki Ishizuka ORCID ; Yusuke Kozuka SAMURAI ORCID ; Terumasa Tadano SAMURAI ORCID ; Yoshihiro Tsujimoto SAMURAI ORCID ; Kazunari Yamaura SAMURAI ORCID ; Shintaro Ishiwata ORCID ; Jun Fujioka ORCID

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Citation
Naoki Abe, Yuya Hano, Hiroaki Ishizuka, Yusuke Kozuka, Terumasa Tadano, Yoshihiro Tsujimoto, Kazunari Yamaura, Shintaro Ishiwata, Jun Fujioka. Large anomalous Hall effect in spin fluctuating devil’s staircase. npj Quantum Materials. 2024, 9 (), 41. https://doi.org/10.1038/s41535-024-00653-3
SAMURAI

Description:

(abstract)

Electrons in metals can show a giant anomalous Hall effect (AHE) when interacting with
characteristic spin texture. The AHE has been discussed in terms of scalar-spin-chirality (SSC) in
long-range-ordered noncollinear spin texture typified by Skyrmion. The SSC becomes effective
even in the paramagnetic state with thermal fluctuations, but the resultant AHE has been limited
to be very small. Here, we report the observation of large AHE caused by the spin fluctuation near 25 the devil’s staircase transition in a collinear antiferromagnetic metal SrCo6O11. The AHE is
prominent near and above the transition temperature at moderate magnetic fields, where the
anomalous Hall angle becomes highest level among known oxide collinear ferromagnets/antiferromagnets (>2%). Furthermore, the anomalous Hall conductivity is
quadratically scaled to the conductivity. These results imply that the thermally induced solitonic 30
spin defects inherent to the devil’s staircase transition promote the SSC-induced skew scattering.

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Keyword: anomalous Hall effect, SrCo6O11, devil's staircase

Date published: 2024-05-17

Publisher: Springer Science and Business Media LLC

Journal:

  • npj Quantum Materials (ISSN: 23974648) vol. 9 41

Funding:

Manuscript type: Publisher's version (Version of record)

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First published URL: https://doi.org/10.1038/s41535-024-00653-3

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Updated at: 2024-05-20 16:30:12 +0900

Published on MDR: 2024-05-20 16:30:12 +0900

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