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Magentic-Field Induced Quantum Phase Transition and Critical Behavior in a Gapped Spin System TlCuCl3

F. Yamada, T. Ono, M. Fujisawa, H. Tanaka, T. Sakakibara

cond-mat.str-elarXiv:cond-mat/0607439

Abstract

Magnetization measurements were performed on TlCuCl3 with gapped ground state. The critical density and the magnetic phase diagram were obtained. The interacting constant was obtained as U/k B = 313 K. The experimental phase boundary for T < 5 K agrees perfectly with the magnon BEC theory based on the Hartree-Fock approximation with realistic dispersion relations and U/k B = 320 K. The exponent ϕ obtained with all the data points for T < 5 K is ϕ= 1.99, which is somewhat larger than theoretical exponent ϕ BEC =3/2. However, it was found that the exponent converges at ϕ BEC =3/2 with decreasing fitting window.

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