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  4. Field-controlled magnetic order in the quantum spin-ladder system (Hpip)2CuBr4
 
research article

Field-controlled magnetic order in the quantum spin-ladder system (Hpip)2CuBr4

Thielemann, Beni
•
Rüegg, christian
•
Kiefer, Klaus
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2009
Physical Review B

Neutron diffraction is used to investigate the field-induced, antiferromagnetically ordered state in the two-leg spin-ladder material (Hpip)(2)CuBr4. This "classical" phase, a consequence of weak interladder coupling, is nevertheless highly unconventional: its properties are influenced strongly by the spin Luttinger-liquid state of the ladder subunits. We determine directly the order parameter (transverse magnetization), the ordering temperature, the spin structure, and the critical exponents around the transition. We introduce a minimal microscopic model for the interladder coupling and calculate the quantum fluctuation corrections to the mean-field interaction.

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Type
research article
DOI
10.1103/PhysRevB.79.020408
Web of Science ID

WOS:000262978100013

Author(s)
Thielemann, Beni
•
Rüegg, christian
•
Kiefer, Klaus
•
Rønnow, Henrik M.  
•
Normand, Bruce
•
Bouillot, P
•
Kollath, C.
•
Orignac, E.
•
Citro, R.
•
Giamarchi, T
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Date Issued

2009

Published in
Physical Review B
Volume

79

Article Number

020408

Subjects

antiferromagnetic materials

•

copper compounds

•

critical exponents

•

fluctuations

•

Luttinger liquid

•

magnetic moments

•

magnetic structure

•

magnetisation

•

magnetocaloric effects

•

Monte Carlo methods

•

Neel temperature

•

neutron diffraction

•

organic compounds

•

X-Y model

•

Criticality

•

Dynamics

•

Chains

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LQM  
Available on Infoscience
March 12, 2009
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/35934
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