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Higgs transition from a magnetic Coulomb liquid to a ferromagnet in Yb₂Ti₂O₇.

Authors :
Chang LJ
Onoda S
Su Y
Kao YJ
Tsuei KD
Yasui Y
Kakurai K
Lees MR
Source :
Nature communications [Nat Commun] 2012; Vol. 3, pp. 992.
Publication Year :
2012

Abstract

In a class of frustrated magnets known as spin ice, magnetic monopoles emerge as classical defects and interact via the magnetic Coulomb law. With quantum-mechanical interactions, these magnetic charges are carried by fractionalized bosonic quasi-particles, spinons, which can undergo Bose-Einstein condensation through a first-order transition via the Higgs mechanism. Here, we report evidence of a Higgs transition from a magnetic Coulomb liquid to a ferromagnet in single-crystal Yb(2)Ti(2)O(7). Polarized neutron scattering experiments show that the diffuse [111]-rod scattering and pinch-point features, which develop on cooling are suddenly suppressed below T(C)~0.21 K, where magnetic Bragg peaks and a full depolarization of the neutron spins are observed with thermal hysteresis, indicating a first-order ferromagnetic transition. Our results are explained on the basis of a quantum spin-ice model, whose high-temperature phase is effectively described as a magnetic Coulomb liquid, whereas the ground state shows a nearly collinear ferromagnetism with gapped spin excitations.

Details

Language :
English
ISSN :
2041-1723
Volume :
3
Database :
MEDLINE
Journal :
Nature communications
Publication Type :
Academic Journal
Accession number :
22871811
Full Text :
https://doi.org/10.1038/ncomms1989