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Electronic Structure of the Kitaev Material α-RuCl(3) Probed by Photoemission and Inverse Photoemission Spectroscopies

Recently, α-RuCl(3) has attracted much attention as a possible material to realize the honeycomb Kitaev model of a quantum-spin-liquid state. Although the magnetic properties of α-RuCl(3) have been extensively studied, its electronic structure, which is strongly related to its Kitaev physics, is poo...

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Autores principales: Sinn, Soobin, Kim, Choong Hyun, Kim, Beom Hyun, Lee, Kyung Dong, Won, Choong Jae, Oh, Ji Seop, Han, Moonsup, Chang, Young Jun, Hur, Namjung, Sato, Hitoshi, Park, Byeong-Gyu, Kim, Changyoung, Kim, Hyeong-Do, Noh, Tae Won
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5175179/
https://www.ncbi.nlm.nih.gov/pubmed/28000731
http://dx.doi.org/10.1038/srep39544
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author Sinn, Soobin
Kim, Choong Hyun
Kim, Beom Hyun
Lee, Kyung Dong
Won, Choong Jae
Oh, Ji Seop
Han, Moonsup
Chang, Young Jun
Hur, Namjung
Sato, Hitoshi
Park, Byeong-Gyu
Kim, Changyoung
Kim, Hyeong-Do
Noh, Tae Won
author_facet Sinn, Soobin
Kim, Choong Hyun
Kim, Beom Hyun
Lee, Kyung Dong
Won, Choong Jae
Oh, Ji Seop
Han, Moonsup
Chang, Young Jun
Hur, Namjung
Sato, Hitoshi
Park, Byeong-Gyu
Kim, Changyoung
Kim, Hyeong-Do
Noh, Tae Won
author_sort Sinn, Soobin
collection PubMed
description Recently, α-RuCl(3) has attracted much attention as a possible material to realize the honeycomb Kitaev model of a quantum-spin-liquid state. Although the magnetic properties of α-RuCl(3) have been extensively studied, its electronic structure, which is strongly related to its Kitaev physics, is poorly understood. Here, the electronic structure of α-RuCl(3) was investigated by photoemission (PE) and inverse-photoemission (IPE) spectroscopies. The band gap was directly measured from the PE and IPE spectra and was found to be 1.9 eV, much larger than previously estimated values. Local density approximation (LDA) calculations showed that the on-site Coulomb interaction U could open the band gap without spin-orbit coupling (SOC). However, the SOC should also be incorporated to reproduce the proper gap size, indicating that the interplay between U and SOC plays an essential role. Several features of the PE and IPE spectra could not be explained by the results of LDA calculations. To explain such discrepancies, we performed configuration-interaction calculations for a RuCl(6)(3−) cluster. The experimental data and calculations demonstrated that the 4d compound α-RuCl(3) is a J(eff) = 1/2 Mott insulator rather than a quasimolecular-orbital insulator. Our study also provides important physical parameters required for verifying the proposed Kitaev physics in α-RuCl(3).
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spelling pubmed-51751792016-12-28 Electronic Structure of the Kitaev Material α-RuCl(3) Probed by Photoemission and Inverse Photoemission Spectroscopies Sinn, Soobin Kim, Choong Hyun Kim, Beom Hyun Lee, Kyung Dong Won, Choong Jae Oh, Ji Seop Han, Moonsup Chang, Young Jun Hur, Namjung Sato, Hitoshi Park, Byeong-Gyu Kim, Changyoung Kim, Hyeong-Do Noh, Tae Won Sci Rep Article Recently, α-RuCl(3) has attracted much attention as a possible material to realize the honeycomb Kitaev model of a quantum-spin-liquid state. Although the magnetic properties of α-RuCl(3) have been extensively studied, its electronic structure, which is strongly related to its Kitaev physics, is poorly understood. Here, the electronic structure of α-RuCl(3) was investigated by photoemission (PE) and inverse-photoemission (IPE) spectroscopies. The band gap was directly measured from the PE and IPE spectra and was found to be 1.9 eV, much larger than previously estimated values. Local density approximation (LDA) calculations showed that the on-site Coulomb interaction U could open the band gap without spin-orbit coupling (SOC). However, the SOC should also be incorporated to reproduce the proper gap size, indicating that the interplay between U and SOC plays an essential role. Several features of the PE and IPE spectra could not be explained by the results of LDA calculations. To explain such discrepancies, we performed configuration-interaction calculations for a RuCl(6)(3−) cluster. The experimental data and calculations demonstrated that the 4d compound α-RuCl(3) is a J(eff) = 1/2 Mott insulator rather than a quasimolecular-orbital insulator. Our study also provides important physical parameters required for verifying the proposed Kitaev physics in α-RuCl(3). Nature Publishing Group 2016-12-21 /pmc/articles/PMC5175179/ /pubmed/28000731 http://dx.doi.org/10.1038/srep39544 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Sinn, Soobin
Kim, Choong Hyun
Kim, Beom Hyun
Lee, Kyung Dong
Won, Choong Jae
Oh, Ji Seop
Han, Moonsup
Chang, Young Jun
Hur, Namjung
Sato, Hitoshi
Park, Byeong-Gyu
Kim, Changyoung
Kim, Hyeong-Do
Noh, Tae Won
Electronic Structure of the Kitaev Material α-RuCl(3) Probed by Photoemission and Inverse Photoemission Spectroscopies
title Electronic Structure of the Kitaev Material α-RuCl(3) Probed by Photoemission and Inverse Photoemission Spectroscopies
title_full Electronic Structure of the Kitaev Material α-RuCl(3) Probed by Photoemission and Inverse Photoemission Spectroscopies
title_fullStr Electronic Structure of the Kitaev Material α-RuCl(3) Probed by Photoemission and Inverse Photoemission Spectroscopies
title_full_unstemmed Electronic Structure of the Kitaev Material α-RuCl(3) Probed by Photoemission and Inverse Photoemission Spectroscopies
title_short Electronic Structure of the Kitaev Material α-RuCl(3) Probed by Photoemission and Inverse Photoemission Spectroscopies
title_sort electronic structure of the kitaev material α-rucl(3) probed by photoemission and inverse photoemission spectroscopies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5175179/
https://www.ncbi.nlm.nih.gov/pubmed/28000731
http://dx.doi.org/10.1038/srep39544
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