Magnon spectrum of the helimagnetic insulator Cu2OSeO3

Cu2OSeO3 possesses a helical spin structure which supports a rich phase diagram of magnetic states, including a lattice of particle-like skyrmions. Here, the authors use inelastic neutron scattering to elucidate the three-dimensional magnon spectrum and underlying spin Hamiltonian of Cu2OSeO3.

Bibliographic Details
Main Authors: P. Y. Portnichenko, J. Romhányi, Y. A. Onykiienko, A. Henschel, M. Schmidt, A. S. Cameron, M. A. Surmach, J. A. Lim, J. T. Park, A. Schneidewind, D. L. Abernathy, H. Rosner, Jeroen van den Brink, D. S. Inosov
Format: Article
Language:English
Published: Nature Publishing Group 2016-02-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms10725
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spelling doaj-646954fe79204b35802383a0baf0188f2021-05-11T11:12:02ZengNature Publishing GroupNature Communications2041-17232016-02-01711810.1038/ncomms10725Magnon spectrum of the helimagnetic insulator Cu2OSeO3P. Y. Portnichenko0J. Romhányi1Y. A. Onykiienko2A. Henschel3M. Schmidt4A. S. Cameron5M. A. Surmach6J. A. Lim7J. T. Park8A. Schneidewind9D. L. Abernathy10H. Rosner11Jeroen van den Brink12D. S. Inosov13Institut für Festkörperphysik, TU DresdenMax Planck Institute for Solid State ResearchInstitut für Festkörperphysik, TU DresdenMax Planck Institute for Chemical Physics of SolidsMax Planck Institute for Chemical Physics of SolidsInstitut für Festkörperphysik, TU DresdenInstitut für Festkörperphysik, TU DresdenInstitut für Festkörperphysik, TU DresdenHeinz Maier-Leibnitz Zentrum (MLZ), TU MünchenJülich Centre for Neutron Science (JCNS), Forschungszentrum Jülich GmbH, Outstation at Heinz Maier-Leibnitz Zentrum (MLZ)Quantum Condensed Matter Division, Oak Ridge National Laboratory (ORNL)Max Planck Institute for Chemical Physics of SolidsLeibniz Institute for Solid State and Materials Research, IFW DresdenInstitut für Festkörperphysik, TU DresdenCu2OSeO3 possesses a helical spin structure which supports a rich phase diagram of magnetic states, including a lattice of particle-like skyrmions. Here, the authors use inelastic neutron scattering to elucidate the three-dimensional magnon spectrum and underlying spin Hamiltonian of Cu2OSeO3.https://doi.org/10.1038/ncomms10725
collection DOAJ
language English
format Article
sources DOAJ
author P. Y. Portnichenko
J. Romhányi
Y. A. Onykiienko
A. Henschel
M. Schmidt
A. S. Cameron
M. A. Surmach
J. A. Lim
J. T. Park
A. Schneidewind
D. L. Abernathy
H. Rosner
Jeroen van den Brink
D. S. Inosov
spellingShingle P. Y. Portnichenko
J. Romhányi
Y. A. Onykiienko
A. Henschel
M. Schmidt
A. S. Cameron
M. A. Surmach
J. A. Lim
J. T. Park
A. Schneidewind
D. L. Abernathy
H. Rosner
Jeroen van den Brink
D. S. Inosov
Magnon spectrum of the helimagnetic insulator Cu2OSeO3
Nature Communications
author_facet P. Y. Portnichenko
J. Romhányi
Y. A. Onykiienko
A. Henschel
M. Schmidt
A. S. Cameron
M. A. Surmach
J. A. Lim
J. T. Park
A. Schneidewind
D. L. Abernathy
H. Rosner
Jeroen van den Brink
D. S. Inosov
author_sort P. Y. Portnichenko
title Magnon spectrum of the helimagnetic insulator Cu2OSeO3
title_short Magnon spectrum of the helimagnetic insulator Cu2OSeO3
title_full Magnon spectrum of the helimagnetic insulator Cu2OSeO3
title_fullStr Magnon spectrum of the helimagnetic insulator Cu2OSeO3
title_full_unstemmed Magnon spectrum of the helimagnetic insulator Cu2OSeO3
title_sort magnon spectrum of the helimagnetic insulator cu2oseo3
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2016-02-01
description Cu2OSeO3 possesses a helical spin structure which supports a rich phase diagram of magnetic states, including a lattice of particle-like skyrmions. Here, the authors use inelastic neutron scattering to elucidate the three-dimensional magnon spectrum and underlying spin Hamiltonian of Cu2OSeO3.
url https://doi.org/10.1038/ncomms10725
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