The spin-12 XXZ chain system Cs2CoCl4 in a transverse magnetic field
Abstract
Comparing high-resolution specific heat and thermal expansion measurements to exact finite-size diagonalization, we demonstrate that Cs2CoCl4 for a magnetic field along the crystallographic b axis realizes the spin-12 XXZ chain in a transverse field. Exploiting both thermal as well as virtual excitations of higher crystal field states, we find that the spin chain is in the XY-limit with an anisotropy Jz/J ≈ 0.12 substantially smaller than previously believed. A spin-flop Ising quantum phase transition occurs at a critical field of μ0 Hb cr ≈ 2 T before around 3.5 T the description in terms of an effective spin-12 chain becomes inapplicable.
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