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Title:

Formation of a Topological Non-{{Fermi}} Liquid in {{MnSi}}

Document type:
Zeitschriftenaufsatz
Author(s):
Ritz, R.; Halder, M.; Wagner, M.; Franz, C.; Bauer, A.; Pfleiderer, C.
Abstract:
Fermi liquid theory provides a remarkably powerful framework for the description of the conduction electrons in metals and their ordering phenomena, such as superconductivity, ferromagnetism, and spin- and charge-density-wave order. A different class of ordering phenomena of great interest concerns spin configurations that are topologically protected, that is, their topology can be destroyed only by forcing the average magnetization locally to zero1. Examples of such configurations are hedgehogs...     »
Journal title:
Nature
Year:
2013
Journal volume:
497
Month:
may
Journal issue:
7448
Pages contribution:
231
Language:
en
Fulltext / DOI:
doi:10.1038/nature12023
Print-ISSN:
1476-4687
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