Survival of itinerant excitations and quantum spin state transitions in YbMgGaO4 with chemical disorder

It remains an open question as to whether the quantum spin liquid state survives material disorder, or is replaced by some spin-liquid like state. Here, Rao et al succeed in resolving a resolving a κ 0/T residual in the thermal conductivity of YbMgGaO4 strongly suggesting the survival of the quantum...

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Autores principales: X. Rao, G. Hussain, Q. Huang, W. J. Chu, N. Li, X. Zhao, Z. Dun, E. S. Choi, T. Asaba, L. Chen, L. Li, X. Y. Yue, N. N. Wang, J.-G. Cheng, Y. H. Gao, Y. Shen, J. Zhao, G. Chen, H. D. Zhou, X. F. Sun
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/d189eb4abc354df28d6a64f5bc952145
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spelling oai:doaj.org-article:d189eb4abc354df28d6a64f5bc9521452021-12-02T18:00:08ZSurvival of itinerant excitations and quantum spin state transitions in YbMgGaO4 with chemical disorder10.1038/s41467-021-25247-62041-1723https://doaj.org/article/d189eb4abc354df28d6a64f5bc9521452021-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25247-6https://doaj.org/toc/2041-1723It remains an open question as to whether the quantum spin liquid state survives material disorder, or is replaced by some spin-liquid like state. Here, Rao et al succeed in resolving a resolving a κ 0/T residual in the thermal conductivity of YbMgGaO4 strongly suggesting the survival of the quantum spin liquid state.X. RaoG. HussainQ. HuangW. J. ChuN. LiX. ZhaoZ. DunE. S. ChoiT. AsabaL. ChenL. LiX. Y. YueN. N. WangJ.-G. ChengY. H. GaoY. ShenJ. ZhaoG. ChenH. D. ZhouX. F. SunNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-9 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
X. Rao
G. Hussain
Q. Huang
W. J. Chu
N. Li
X. Zhao
Z. Dun
E. S. Choi
T. Asaba
L. Chen
L. Li
X. Y. Yue
N. N. Wang
J.-G. Cheng
Y. H. Gao
Y. Shen
J. Zhao
G. Chen
H. D. Zhou
X. F. Sun
Survival of itinerant excitations and quantum spin state transitions in YbMgGaO4 with chemical disorder
description It remains an open question as to whether the quantum spin liquid state survives material disorder, or is replaced by some spin-liquid like state. Here, Rao et al succeed in resolving a resolving a κ 0/T residual in the thermal conductivity of YbMgGaO4 strongly suggesting the survival of the quantum spin liquid state.
format article
author X. Rao
G. Hussain
Q. Huang
W. J. Chu
N. Li
X. Zhao
Z. Dun
E. S. Choi
T. Asaba
L. Chen
L. Li
X. Y. Yue
N. N. Wang
J.-G. Cheng
Y. H. Gao
Y. Shen
J. Zhao
G. Chen
H. D. Zhou
X. F. Sun
author_facet X. Rao
G. Hussain
Q. Huang
W. J. Chu
N. Li
X. Zhao
Z. Dun
E. S. Choi
T. Asaba
L. Chen
L. Li
X. Y. Yue
N. N. Wang
J.-G. Cheng
Y. H. Gao
Y. Shen
J. Zhao
G. Chen
H. D. Zhou
X. F. Sun
author_sort X. Rao
title Survival of itinerant excitations and quantum spin state transitions in YbMgGaO4 with chemical disorder
title_short Survival of itinerant excitations and quantum spin state transitions in YbMgGaO4 with chemical disorder
title_full Survival of itinerant excitations and quantum spin state transitions in YbMgGaO4 with chemical disorder
title_fullStr Survival of itinerant excitations and quantum spin state transitions in YbMgGaO4 with chemical disorder
title_full_unstemmed Survival of itinerant excitations and quantum spin state transitions in YbMgGaO4 with chemical disorder
title_sort survival of itinerant excitations and quantum spin state transitions in ybmggao4 with chemical disorder
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/d189eb4abc354df28d6a64f5bc952145
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