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
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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