Magnetism and local symmetry breaking in a Mott insulator with strong spin orbit interactions

Local probing into the microscopic degrees of freedom is highly desired to understand emergent exotic quantum phases. Here, the authors report a canted ferromagnetic phase preceded by local point symmetry breaking at low temperature in Ba2NaOsO6, acquired by probing into the spin, orbital and lattic...

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Main Authors: L. Lu, M. Song, W. Liu, A. P. Reyes, P. Kuhns, H. O. Lee, I. R. Fisher, V. F. Mitrović
Format: Article
Language:English
Published: Nature Portfolio 2017-02-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms14407
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author L. Lu
M. Song
W. Liu
A. P. Reyes
P. Kuhns
H. O. Lee
I. R. Fisher
V. F. Mitrović
author_facet L. Lu
M. Song
W. Liu
A. P. Reyes
P. Kuhns
H. O. Lee
I. R. Fisher
V. F. Mitrović
author_sort L. Lu
collection DOAJ
description Local probing into the microscopic degrees of freedom is highly desired to understand emergent exotic quantum phases. Here, the authors report a canted ferromagnetic phase preceded by local point symmetry breaking at low temperature in Ba2NaOsO6, acquired by probing into the spin, orbital and lattice degrees of freedom.
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spelling doaj.art-856cb0f74819466696a3abca57edc4452022-12-21T18:32:15ZengNature PortfolioNature Communications2041-17232017-02-01811810.1038/ncomms14407Magnetism and local symmetry breaking in a Mott insulator with strong spin orbit interactionsL. Lu0M. Song1W. Liu2A. P. Reyes3P. Kuhns4H. O. Lee5I. R. Fisher6V. F. Mitrović7Department of Physics, Brown UniversityDepartment of Physics, Brown UniversityDepartment of Physics, Brown UniversityNational High Magnetic Field LaboratoryNational High Magnetic Field LaboratoryDepartment of Applied Physics and Geballe Laboratory for Advanced Materials, Stanford UniversityDepartment of Applied Physics and Geballe Laboratory for Advanced Materials, Stanford UniversityDepartment of Physics, Brown UniversityLocal probing into the microscopic degrees of freedom is highly desired to understand emergent exotic quantum phases. Here, the authors report a canted ferromagnetic phase preceded by local point symmetry breaking at low temperature in Ba2NaOsO6, acquired by probing into the spin, orbital and lattice degrees of freedom.https://doi.org/10.1038/ncomms14407
spellingShingle L. Lu
M. Song
W. Liu
A. P. Reyes
P. Kuhns
H. O. Lee
I. R. Fisher
V. F. Mitrović
Magnetism and local symmetry breaking in a Mott insulator with strong spin orbit interactions
Nature Communications
title Magnetism and local symmetry breaking in a Mott insulator with strong spin orbit interactions
title_full Magnetism and local symmetry breaking in a Mott insulator with strong spin orbit interactions
title_fullStr Magnetism and local symmetry breaking in a Mott insulator with strong spin orbit interactions
title_full_unstemmed Magnetism and local symmetry breaking in a Mott insulator with strong spin orbit interactions
title_short Magnetism and local symmetry breaking in a Mott insulator with strong spin orbit interactions
title_sort magnetism and local symmetry breaking in a mott insulator with strong spin orbit interactions
url https://doi.org/10.1038/ncomms14407
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