Topological transitions among skyrmion- and hedgehog-lattice states in cubic chiral magnets
Manipulating topological spin textures are demanded for future spintronic devices, but knowledge about phase transitions among different spin textures remain limited. Here, Fujishiro and Kanazawa et al. report chemical-pressure-controlled phase transitions between different topological spin textures...
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doaj-e489a55c73fd4b7f977715dbd4a413ec2021-05-11T11:28:55ZengNature Publishing GroupNature Communications2041-17232019-03-011011810.1038/s41467-019-08985-6Topological transitions among skyrmion- and hedgehog-lattice states in cubic chiral magnetsY. Fujishiro0N. Kanazawa1T. Nakajima2X. Z. Yu3K. Ohishi4Y. Kawamura5K. Kakurai6T. Arima7H. Mitamura8A. Miyake9K. Akiba10M. Tokunaga11A. Matsuo12K. Kindo13T. Koretsune14R. Arita15Y. Tokura16Department of Applied Physics, The University of Tokyo, Bunkyo-kuDepartment of Applied Physics, The University of Tokyo, Bunkyo-kuRIKEN Center for Emergent Matter Science (CEMS), WakoRIKEN Center for Emergent Matter Science (CEMS), WakoNeutron Science and Technology Center, Comprehensive Research Organization for Science and Society (CROSS), Tokai, NakaNeutron Science and Technology Center, Comprehensive Research Organization for Science and Society (CROSS), Tokai, NakaRIKEN Center for Emergent Matter Science (CEMS), WakoRIKEN Center for Emergent Matter Science (CEMS), WakoThe Institute for Solid State Physics (ISSP), The University of TokyoThe Institute for Solid State Physics (ISSP), The University of TokyoThe Institute for Solid State Physics (ISSP), The University of TokyoThe Institute for Solid State Physics (ISSP), The University of TokyoThe Institute for Solid State Physics (ISSP), The University of TokyoThe Institute for Solid State Physics (ISSP), The University of TokyoDepartment of Physics, Tohoku University, Aoba-kuDepartment of Applied Physics, The University of Tokyo, Bunkyo-kuDepartment of Applied Physics, The University of Tokyo, Bunkyo-kuManipulating topological spin textures are demanded for future spintronic devices, but knowledge about phase transitions among different spin textures remain limited. Here, Fujishiro and Kanazawa et al. report chemical-pressure-controlled phase transitions between different topological spin textures in chiral magnets MnSi1−x Ge x .https://doi.org/10.1038/s41467-019-08985-6 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Y. Fujishiro N. Kanazawa T. Nakajima X. Z. Yu K. Ohishi Y. Kawamura K. Kakurai T. Arima H. Mitamura A. Miyake K. Akiba M. Tokunaga A. Matsuo K. Kindo T. Koretsune R. Arita Y. Tokura |
spellingShingle |
Y. Fujishiro N. Kanazawa T. Nakajima X. Z. Yu K. Ohishi Y. Kawamura K. Kakurai T. Arima H. Mitamura A. Miyake K. Akiba M. Tokunaga A. Matsuo K. Kindo T. Koretsune R. Arita Y. Tokura Topological transitions among skyrmion- and hedgehog-lattice states in cubic chiral magnets Nature Communications |
author_facet |
Y. Fujishiro N. Kanazawa T. Nakajima X. Z. Yu K. Ohishi Y. Kawamura K. Kakurai T. Arima H. Mitamura A. Miyake K. Akiba M. Tokunaga A. Matsuo K. Kindo T. Koretsune R. Arita Y. Tokura |
author_sort |
Y. Fujishiro |
title |
Topological transitions among skyrmion- and hedgehog-lattice states in cubic chiral magnets |
title_short |
Topological transitions among skyrmion- and hedgehog-lattice states in cubic chiral magnets |
title_full |
Topological transitions among skyrmion- and hedgehog-lattice states in cubic chiral magnets |
title_fullStr |
Topological transitions among skyrmion- and hedgehog-lattice states in cubic chiral magnets |
title_full_unstemmed |
Topological transitions among skyrmion- and hedgehog-lattice states in cubic chiral magnets |
title_sort |
topological transitions among skyrmion- and hedgehog-lattice states in cubic chiral magnets |
publisher |
Nature Publishing Group |
series |
Nature Communications |
issn |
2041-1723 |
publishDate |
2019-03-01 |
description |
Manipulating topological spin textures are demanded for future spintronic devices, but knowledge about phase transitions among different spin textures remain limited. Here, Fujishiro and Kanazawa et al. report chemical-pressure-controlled phase transitions between different topological spin textures in chiral magnets MnSi1−x Ge x . |
url |
https://doi.org/10.1038/s41467-019-08985-6 |
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