Volume-wise destruction of the antiferromagnetic Mott insulating state through quantum tuning

Knowing whether a quantum phase transition is first- or second-order is crucial for understanding any associated exotic phenomena, but direct experimental evidence has been scarce. Here, Frandsen et al. report first-order magnetic quantum phase transitions in archetypal Mott systems, providing insig...

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Autores principales: Benjamin A. Frandsen, Lian Liu, Sky C. Cheung, Zurab Guguchia, Rustem Khasanov, Elvezio Morenzoni, Timothy J. S. Munsie, Alannah M. Hallas, Murray N. Wilson, Yipeng Cai, Graeme M. Luke, Bijuan Chen, Wenmin Li, Changqing Jin, Cui Ding, Shengli Guo, Fanlong Ning, Takashi U. Ito, Wataru Higemoto, Simon J. L. Billinge, Shoya Sakamoto, Atsushi Fujimori, Taito Murakami, Hiroshi Kageyama, Jose Antonio Alonso, Gabriel Kotliar, Masatoshi Imada, Yasutomo J. Uemura
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/7e9919722cb14d35b9ea6ded90e31820
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spelling oai:doaj.org-article:7e9919722cb14d35b9ea6ded90e318202021-12-02T14:38:54ZVolume-wise destruction of the antiferromagnetic Mott insulating state through quantum tuning10.1038/ncomms125192041-1723https://doaj.org/article/7e9919722cb14d35b9ea6ded90e318202016-08-01T00:00:00Zhttps://doi.org/10.1038/ncomms12519https://doaj.org/toc/2041-1723Knowing whether a quantum phase transition is first- or second-order is crucial for understanding any associated exotic phenomena, but direct experimental evidence has been scarce. Here, Frandsen et al. report first-order magnetic quantum phase transitions in archetypal Mott systems, providing insight into the underlying quantum fluctuations.Benjamin A. FrandsenLian LiuSky C. CheungZurab GuguchiaRustem KhasanovElvezio MorenzoniTimothy J. S. MunsieAlannah M. HallasMurray N. WilsonYipeng CaiGraeme M. LukeBijuan ChenWenmin LiChangqing JinCui DingShengli GuoFanlong NingTakashi U. ItoWataru HigemotoSimon J. L. BillingeShoya SakamotoAtsushi FujimoriTaito MurakamiHiroshi KageyamaJose Antonio AlonsoGabriel KotliarMasatoshi ImadaYasutomo J. UemuraNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-8 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Benjamin A. Frandsen
Lian Liu
Sky C. Cheung
Zurab Guguchia
Rustem Khasanov
Elvezio Morenzoni
Timothy J. S. Munsie
Alannah M. Hallas
Murray N. Wilson
Yipeng Cai
Graeme M. Luke
Bijuan Chen
Wenmin Li
Changqing Jin
Cui Ding
Shengli Guo
Fanlong Ning
Takashi U. Ito
Wataru Higemoto
Simon J. L. Billinge
Shoya Sakamoto
Atsushi Fujimori
Taito Murakami
Hiroshi Kageyama
Jose Antonio Alonso
Gabriel Kotliar
Masatoshi Imada
Yasutomo J. Uemura
Volume-wise destruction of the antiferromagnetic Mott insulating state through quantum tuning
description Knowing whether a quantum phase transition is first- or second-order is crucial for understanding any associated exotic phenomena, but direct experimental evidence has been scarce. Here, Frandsen et al. report first-order magnetic quantum phase transitions in archetypal Mott systems, providing insight into the underlying quantum fluctuations.
format article
author Benjamin A. Frandsen
Lian Liu
Sky C. Cheung
Zurab Guguchia
Rustem Khasanov
Elvezio Morenzoni
Timothy J. S. Munsie
Alannah M. Hallas
Murray N. Wilson
Yipeng Cai
Graeme M. Luke
Bijuan Chen
Wenmin Li
Changqing Jin
Cui Ding
Shengli Guo
Fanlong Ning
Takashi U. Ito
Wataru Higemoto
Simon J. L. Billinge
Shoya Sakamoto
Atsushi Fujimori
Taito Murakami
Hiroshi Kageyama
Jose Antonio Alonso
Gabriel Kotliar
Masatoshi Imada
Yasutomo J. Uemura
author_facet Benjamin A. Frandsen
Lian Liu
Sky C. Cheung
Zurab Guguchia
Rustem Khasanov
Elvezio Morenzoni
Timothy J. S. Munsie
Alannah M. Hallas
Murray N. Wilson
Yipeng Cai
Graeme M. Luke
Bijuan Chen
Wenmin Li
Changqing Jin
Cui Ding
Shengli Guo
Fanlong Ning
Takashi U. Ito
Wataru Higemoto
Simon J. L. Billinge
Shoya Sakamoto
Atsushi Fujimori
Taito Murakami
Hiroshi Kageyama
Jose Antonio Alonso
Gabriel Kotliar
Masatoshi Imada
Yasutomo J. Uemura
author_sort Benjamin A. Frandsen
title Volume-wise destruction of the antiferromagnetic Mott insulating state through quantum tuning
title_short Volume-wise destruction of the antiferromagnetic Mott insulating state through quantum tuning
title_full Volume-wise destruction of the antiferromagnetic Mott insulating state through quantum tuning
title_fullStr Volume-wise destruction of the antiferromagnetic Mott insulating state through quantum tuning
title_full_unstemmed Volume-wise destruction of the antiferromagnetic Mott insulating state through quantum tuning
title_sort volume-wise destruction of the antiferromagnetic mott insulating state through quantum tuning
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/7e9919722cb14d35b9ea6ded90e31820
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