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  4. Spin excitations and quantum criticality in the quasi-one-dimensional Ising-like ferromagnet CoCl2⋅2D2O in a transverse field
 
research article

Spin excitations and quantum criticality in the quasi-one-dimensional Ising-like ferromagnet CoCl2⋅2D2O in a transverse field

Rønnow, Henrik M.  
•
Larsen, J.
•
Schäffer, T. K.
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November 20, 2017
Physical Review B

We present experimental evidence for a quantum phase transition in the easy-axis S=3/2 anisotropic quasi-one-dimensional ferromagnet CoCl2⋅2D2O in a transverse field. Elastic neutron scattering shows that the magnetic order parameter vanishes at a transverse critical field μ0Hc=16.05(4) T, while inelastic neutron scattering shows that the gap in the magnetic excitation spectrum vanishes at the same field value, and reopens for H>Hc. The field dependence of the order parameter and the gap are well described by critical exponents β=0.45±0.09 and zν close to 1/2, implying that the quantum phase transition in CoCl2⋅2D2O differs significantly from the textbook version of a S=1/2 Ising chain in a transverse field. We attribute the difference to weak but finite three-dimensionality of the magnetic interactions.

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Type
research article
DOI
10.1103/PhysRevB.96.174424
Web of Science ID

WOS:WOS:000415674700001

Author(s)
Rønnow, Henrik M.  
Larsen, J.
Schäffer, T. K.
Hansen, U. B.
Holm, S. L.
Ahl, S. R.
Toft-Petersen, R.
Taylor, J.
Ehlers, G.
Jensen, J.
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Date Issued

2017-11-20

Published in
Physical Review B
Volume

96

Issue

17

Article Number

174424

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LQM  
Available on Infoscience
January 16, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/164628
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