Emerging spin–phonon coupling through cross-talk of two magnetic sublattices

Typically, magnetic phenomena result from the spontaneous order of the sublattices. Here, the cross-talk of two magnetic ions gives rise to an intrinsic, yet non-spontaneous ordering and manifests as emergent strong spin–phonon coupling in SmFeO3.

Bibliographic Details
Main Authors: Mads C. Weber, Mael Guennou, Donald M. Evans, Constance Toulouse, Arkadiy Simonov, Yevheniia Kholina, Xiaoxuan Ma, Wei Ren, Shixun Cao, Michael A. Carpenter, Brahim Dkhil, Manfred Fiebig, Jens Kreisel
Format: Article
Language:English
Published: Nature Portfolio 2022-01-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-021-27267-8
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author Mads C. Weber
Mael Guennou
Donald M. Evans
Constance Toulouse
Arkadiy Simonov
Yevheniia Kholina
Xiaoxuan Ma
Wei Ren
Shixun Cao
Michael A. Carpenter
Brahim Dkhil
Manfred Fiebig
Jens Kreisel
author_facet Mads C. Weber
Mael Guennou
Donald M. Evans
Constance Toulouse
Arkadiy Simonov
Yevheniia Kholina
Xiaoxuan Ma
Wei Ren
Shixun Cao
Michael A. Carpenter
Brahim Dkhil
Manfred Fiebig
Jens Kreisel
author_sort Mads C. Weber
collection DOAJ
description Typically, magnetic phenomena result from the spontaneous order of the sublattices. Here, the cross-talk of two magnetic ions gives rise to an intrinsic, yet non-spontaneous ordering and manifests as emergent strong spin–phonon coupling in SmFeO3.
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spelling doaj.art-6a043c8f6c944d3bab7964f4bf7f94012022-12-21T23:43:16ZengNature PortfolioNature Communications2041-17232022-01-011311710.1038/s41467-021-27267-8Emerging spin–phonon coupling through cross-talk of two magnetic sublatticesMads C. Weber0Mael Guennou1Donald M. Evans2Constance Toulouse3Arkadiy Simonov4Yevheniia Kholina5Xiaoxuan Ma6Wei Ren7Shixun Cao8Michael A. Carpenter9Brahim Dkhil10Manfred Fiebig11Jens Kreisel12Department of Materials, ETH ZurichDepartment of Physics and Materials Science, University of Luxembourg, 41 Rue du BrillDepartment of Earth Sciences, University of CambridgeDepartment of Physics and Materials Science, University of Luxembourg, 41 Rue du BrillDepartment of Materials, ETH ZurichDepartment of Materials, ETH ZurichDepartment of Physics, Materials Genome Institute and International Center for Quantum and Molecular Structures, Shanghai UniversityDepartment of Physics, Materials Genome Institute and International Center for Quantum and Molecular Structures, Shanghai UniversityDepartment of Physics, Materials Genome Institute and International Center for Quantum and Molecular Structures, Shanghai UniversityDepartment of Earth Sciences, University of CambridgeLaboratoire Structures, Propriétés et Modélisation des Solides, Centrale Supélec, CNRS-UMR8580, Université Paris-SaclayDepartment of Materials, ETH ZurichDepartment of Physics and Materials Science, University of Luxembourg, 41 Rue du BrillTypically, magnetic phenomena result from the spontaneous order of the sublattices. Here, the cross-talk of two magnetic ions gives rise to an intrinsic, yet non-spontaneous ordering and manifests as emergent strong spin–phonon coupling in SmFeO3.https://doi.org/10.1038/s41467-021-27267-8
spellingShingle Mads C. Weber
Mael Guennou
Donald M. Evans
Constance Toulouse
Arkadiy Simonov
Yevheniia Kholina
Xiaoxuan Ma
Wei Ren
Shixun Cao
Michael A. Carpenter
Brahim Dkhil
Manfred Fiebig
Jens Kreisel
Emerging spin–phonon coupling through cross-talk of two magnetic sublattices
Nature Communications
title Emerging spin–phonon coupling through cross-talk of two magnetic sublattices
title_full Emerging spin–phonon coupling through cross-talk of two magnetic sublattices
title_fullStr Emerging spin–phonon coupling through cross-talk of two magnetic sublattices
title_full_unstemmed Emerging spin–phonon coupling through cross-talk of two magnetic sublattices
title_short Emerging spin–phonon coupling through cross-talk of two magnetic sublattices
title_sort emerging spin phonon coupling through cross talk of two magnetic sublattices
url https://doi.org/10.1038/s41467-021-27267-8
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