Dynamic fingerprint of fractionalized excitations in single-crystalline Cu3Zn(OH)6FBr

Spinon excitations of a Kagome quantum spin liquid are expected to give rise to a magnetic continuum in Raman spectroscopy. Here, the authors report a magnetic Raman continuum in the Kagome spin liquid candidate Cu3Zn(OH)6FBr, in contrast to a sharp magnon Raman peak in the Kagome antiferromagnet Eu...

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Autores principales: Ying Fu, Miao-Ling Lin, Le Wang, Qiye Liu, Lianglong Huang, Wenrui Jiang, Zhanyang Hao, Cai Liu, Hu Zhang, Xingqiang Shi, Jun Zhang, Junfeng Dai, Dapeng Yu, Fei Ye, Patrick A. Lee, Ping-Heng Tan, Jia-Wei Mei
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/c07001648efa4f0d9035c2ef9eec5af9
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spelling oai:doaj.org-article:c07001648efa4f0d9035c2ef9eec5af92021-12-02T14:47:29ZDynamic fingerprint of fractionalized excitations in single-crystalline Cu3Zn(OH)6FBr10.1038/s41467-021-23381-92041-1723https://doaj.org/article/c07001648efa4f0d9035c2ef9eec5af92021-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-23381-9https://doaj.org/toc/2041-1723Spinon excitations of a Kagome quantum spin liquid are expected to give rise to a magnetic continuum in Raman spectroscopy. Here, the authors report a magnetic Raman continuum in the Kagome spin liquid candidate Cu3Zn(OH)6FBr, in contrast to a sharp magnon Raman peak in the Kagome antiferromagnet EuCu3(OH)6Cl3.Ying FuMiao-Ling LinLe WangQiye LiuLianglong HuangWenrui JiangZhanyang HaoCai LiuHu ZhangXingqiang ShiJun ZhangJunfeng DaiDapeng YuFei YePatrick A. LeePing-Heng TanJia-Wei MeiNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ying Fu
Miao-Ling Lin
Le Wang
Qiye Liu
Lianglong Huang
Wenrui Jiang
Zhanyang Hao
Cai Liu
Hu Zhang
Xingqiang Shi
Jun Zhang
Junfeng Dai
Dapeng Yu
Fei Ye
Patrick A. Lee
Ping-Heng Tan
Jia-Wei Mei
Dynamic fingerprint of fractionalized excitations in single-crystalline Cu3Zn(OH)6FBr
description Spinon excitations of a Kagome quantum spin liquid are expected to give rise to a magnetic continuum in Raman spectroscopy. Here, the authors report a magnetic Raman continuum in the Kagome spin liquid candidate Cu3Zn(OH)6FBr, in contrast to a sharp magnon Raman peak in the Kagome antiferromagnet EuCu3(OH)6Cl3.
format article
author Ying Fu
Miao-Ling Lin
Le Wang
Qiye Liu
Lianglong Huang
Wenrui Jiang
Zhanyang Hao
Cai Liu
Hu Zhang
Xingqiang Shi
Jun Zhang
Junfeng Dai
Dapeng Yu
Fei Ye
Patrick A. Lee
Ping-Heng Tan
Jia-Wei Mei
author_facet Ying Fu
Miao-Ling Lin
Le Wang
Qiye Liu
Lianglong Huang
Wenrui Jiang
Zhanyang Hao
Cai Liu
Hu Zhang
Xingqiang Shi
Jun Zhang
Junfeng Dai
Dapeng Yu
Fei Ye
Patrick A. Lee
Ping-Heng Tan
Jia-Wei Mei
author_sort Ying Fu
title Dynamic fingerprint of fractionalized excitations in single-crystalline Cu3Zn(OH)6FBr
title_short Dynamic fingerprint of fractionalized excitations in single-crystalline Cu3Zn(OH)6FBr
title_full Dynamic fingerprint of fractionalized excitations in single-crystalline Cu3Zn(OH)6FBr
title_fullStr Dynamic fingerprint of fractionalized excitations in single-crystalline Cu3Zn(OH)6FBr
title_full_unstemmed Dynamic fingerprint of fractionalized excitations in single-crystalline Cu3Zn(OH)6FBr
title_sort dynamic fingerprint of fractionalized excitations in single-crystalline cu3zn(oh)6fbr
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/c07001648efa4f0d9035c2ef9eec5af9
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