Proximate ferromagnetic state in the Kitaev model material α-RuCl3

RuCl3 has stood out as a prime candidate in the search for quantum spin liquids; however, its antiferromagnetic ordering at low temperature suggests deviations from typical QSL models. Here, using resonant inelastic x-ray scattering, the authors provide a comprehensive determination of the low energ...

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Autores principales: H. Suzuki, H. Liu, J. Bertinshaw, K. Ueda, H. Kim, S. Laha, D. Weber, Z. Yang, L. Wang, H. Takahashi, K. Fürsich, M. Minola, B. V. Lotsch, B. J. Kim, H. Yavaş, M. Daghofer, J. Chaloupka, G. Khaliullin, H. Gretarsson, B. Keimer
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/e3e1d0acbc944852b0009c13ff4a3eaa
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spelling oai:doaj.org-article:e3e1d0acbc944852b0009c13ff4a3eaa2021-12-02T16:43:36ZProximate ferromagnetic state in the Kitaev model material α-RuCl310.1038/s41467-021-24722-42041-1723https://doaj.org/article/e3e1d0acbc944852b0009c13ff4a3eaa2021-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24722-4https://doaj.org/toc/2041-1723RuCl3 has stood out as a prime candidate in the search for quantum spin liquids; however, its antiferromagnetic ordering at low temperature suggests deviations from typical QSL models. Here, using resonant inelastic x-ray scattering, the authors provide a comprehensive determination of the low energy effective Hamiltonian.H. SuzukiH. LiuJ. BertinshawK. UedaH. KimS. LahaD. WeberZ. YangL. WangH. TakahashiK. FürsichM. MinolaB. V. LotschB. J. KimH. YavaşM. DaghoferJ. ChaloupkaG. KhaliullinH. GretarssonB. KeimerNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-9 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
H. Suzuki
H. Liu
J. Bertinshaw
K. Ueda
H. Kim
S. Laha
D. Weber
Z. Yang
L. Wang
H. Takahashi
K. Fürsich
M. Minola
B. V. Lotsch
B. J. Kim
H. Yavaş
M. Daghofer
J. Chaloupka
G. Khaliullin
H. Gretarsson
B. Keimer
Proximate ferromagnetic state in the Kitaev model material α-RuCl3
description RuCl3 has stood out as a prime candidate in the search for quantum spin liquids; however, its antiferromagnetic ordering at low temperature suggests deviations from typical QSL models. Here, using resonant inelastic x-ray scattering, the authors provide a comprehensive determination of the low energy effective Hamiltonian.
format article
author H. Suzuki
H. Liu
J. Bertinshaw
K. Ueda
H. Kim
S. Laha
D. Weber
Z. Yang
L. Wang
H. Takahashi
K. Fürsich
M. Minola
B. V. Lotsch
B. J. Kim
H. Yavaş
M. Daghofer
J. Chaloupka
G. Khaliullin
H. Gretarsson
B. Keimer
author_facet H. Suzuki
H. Liu
J. Bertinshaw
K. Ueda
H. Kim
S. Laha
D. Weber
Z. Yang
L. Wang
H. Takahashi
K. Fürsich
M. Minola
B. V. Lotsch
B. J. Kim
H. Yavaş
M. Daghofer
J. Chaloupka
G. Khaliullin
H. Gretarsson
B. Keimer
author_sort H. Suzuki
title Proximate ferromagnetic state in the Kitaev model material α-RuCl3
title_short Proximate ferromagnetic state in the Kitaev model material α-RuCl3
title_full Proximate ferromagnetic state in the Kitaev model material α-RuCl3
title_fullStr Proximate ferromagnetic state in the Kitaev model material α-RuCl3
title_full_unstemmed Proximate ferromagnetic state in the Kitaev model material α-RuCl3
title_sort proximate ferromagnetic state in the kitaev model material α-rucl3
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/e3e1d0acbc944852b0009c13ff4a3eaa
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