Solitonic Spin-Liquid State Due to the Violation of the Lifshitz Condition in Fe1þyTe
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Contributors
Abstract
A combination of phenomenological analysis and Mossbauer spectroscopy experiments on the tetragonal Fe1+yTe system indicates that the magnetic ordering transition in compounds with higher Fe excess, y >= 0.11, is unconventional. Experimentally, a liquidlike magnetic precursor with quasistatic spin order is found from significantly broadened Mossbauer spectra at temperatures above the antiferromagnetic transition. The incommensurate spin-density wave order in Fe1+yTe is described by a magnetic free energy that violates the weak Lifshitz condition in the Landau theory of second-order transitions. The presence of multiple Lifshitz invariants provides the mechanism to create multidimensional, twisted, and modulated solitonic phases.
Details
Original language | English |
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Article number | 177203 |
Number of pages | 5 |
Journal | Physical review letters |
Volume | 115 |
Issue number | 17 |
Publication status | Published - 21 Oct 2015 |
Peer-reviewed | Yes |
External IDs
WOS | 000363243700010 |
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Scopus | 84945549247 |
Keywords
Keywords
- PHYSICS, VORTEX