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 languageEnglish
Article number177203
Number of pages5
JournalPhysical review letters
Volume115
Issue number17
Publication statusPublished - 21 Oct 2015
Peer-reviewedYes

External IDs

WOS 000363243700010
Scopus 84945549247

Keywords

Keywords

  • PHYSICS, VORTEX

Library keywords