Field-induced quantum spin disordered state in spin-1/2 honeycomb magnet Na2Co2TeO6

The honeycomb lattice with a spin-orbit interaction can give rise to exotic quantum states. With the measurements of bulk properties and inelastic neutron scattering, Lin et al demonstrate the existence of a field induced spin-disordered state in Na2Co2TeO6 and extend the Kitaev model to 3d system.

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Autores principales: Gaoting Lin, Jaehong Jeong, Chaebin Kim, Yao Wang, Qing Huang, Takatsugu Masuda, Shinichiro Asai, Shinichi Itoh, Gerrit Günther, Margarita Russina, Zhilun Lu, Jieming Sheng, Le Wang, Jiucai Wang, Guohua Wang, Qingyong Ren, Chuanying Xi, Wei Tong, Langsheng Ling, Zhengxin Liu, Liusuo Wu, Jiawei Mei, Zhe Qu, Haidong Zhou, Xiaoqun Wang, Je-Geun Park, Yuan Wan, Jie Ma
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/d51f3e50ba964431845575ab819dbb44
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spelling oai:doaj.org-article:d51f3e50ba964431845575ab819dbb442021-12-02T17:27:04ZField-induced quantum spin disordered state in spin-1/2 honeycomb magnet Na2Co2TeO610.1038/s41467-021-25567-72041-1723https://doaj.org/article/d51f3e50ba964431845575ab819dbb442021-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25567-7https://doaj.org/toc/2041-1723The honeycomb lattice with a spin-orbit interaction can give rise to exotic quantum states. With the measurements of bulk properties and inelastic neutron scattering, Lin et al demonstrate the existence of a field induced spin-disordered state in Na2Co2TeO6 and extend the Kitaev model to 3d system.Gaoting LinJaehong JeongChaebin KimYao WangQing HuangTakatsugu MasudaShinichiro AsaiShinichi ItohGerrit GüntherMargarita RussinaZhilun LuJieming ShengLe WangJiucai WangGuohua WangQingyong RenChuanying XiWei TongLangsheng LingZhengxin LiuLiusuo WuJiawei MeiZhe QuHaidong ZhouXiaoqun WangJe-Geun ParkYuan WanJie MaNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Gaoting Lin
Jaehong Jeong
Chaebin Kim
Yao Wang
Qing Huang
Takatsugu Masuda
Shinichiro Asai
Shinichi Itoh
Gerrit Günther
Margarita Russina
Zhilun Lu
Jieming Sheng
Le Wang
Jiucai Wang
Guohua Wang
Qingyong Ren
Chuanying Xi
Wei Tong
Langsheng Ling
Zhengxin Liu
Liusuo Wu
Jiawei Mei
Zhe Qu
Haidong Zhou
Xiaoqun Wang
Je-Geun Park
Yuan Wan
Jie Ma
Field-induced quantum spin disordered state in spin-1/2 honeycomb magnet Na2Co2TeO6
description The honeycomb lattice with a spin-orbit interaction can give rise to exotic quantum states. With the measurements of bulk properties and inelastic neutron scattering, Lin et al demonstrate the existence of a field induced spin-disordered state in Na2Co2TeO6 and extend the Kitaev model to 3d system.
format article
author Gaoting Lin
Jaehong Jeong
Chaebin Kim
Yao Wang
Qing Huang
Takatsugu Masuda
Shinichiro Asai
Shinichi Itoh
Gerrit Günther
Margarita Russina
Zhilun Lu
Jieming Sheng
Le Wang
Jiucai Wang
Guohua Wang
Qingyong Ren
Chuanying Xi
Wei Tong
Langsheng Ling
Zhengxin Liu
Liusuo Wu
Jiawei Mei
Zhe Qu
Haidong Zhou
Xiaoqun Wang
Je-Geun Park
Yuan Wan
Jie Ma
author_facet Gaoting Lin
Jaehong Jeong
Chaebin Kim
Yao Wang
Qing Huang
Takatsugu Masuda
Shinichiro Asai
Shinichi Itoh
Gerrit Günther
Margarita Russina
Zhilun Lu
Jieming Sheng
Le Wang
Jiucai Wang
Guohua Wang
Qingyong Ren
Chuanying Xi
Wei Tong
Langsheng Ling
Zhengxin Liu
Liusuo Wu
Jiawei Mei
Zhe Qu
Haidong Zhou
Xiaoqun Wang
Je-Geun Park
Yuan Wan
Jie Ma
author_sort Gaoting Lin
title Field-induced quantum spin disordered state in spin-1/2 honeycomb magnet Na2Co2TeO6
title_short Field-induced quantum spin disordered state in spin-1/2 honeycomb magnet Na2Co2TeO6
title_full Field-induced quantum spin disordered state in spin-1/2 honeycomb magnet Na2Co2TeO6
title_fullStr Field-induced quantum spin disordered state in spin-1/2 honeycomb magnet Na2Co2TeO6
title_full_unstemmed Field-induced quantum spin disordered state in spin-1/2 honeycomb magnet Na2Co2TeO6
title_sort field-induced quantum spin disordered state in spin-1/2 honeycomb magnet na2co2teo6
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/d51f3e50ba964431845575ab819dbb44
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