PHASE-DIAGRAM OF S=1/2 QUASI-ONE-DIMENSIONAL HEISENBERG-MODEL WITH DIMERIZED ANTIFERROMAGNETIC EXCHANGE

被引:51
作者
KATOH, N
IMADA, M
机构
[1] Institute for Solid State Physics, University of Tokyo, 7-22-1 Roppongi, Minato-ku
关键词
DIMERIZATION; INTERCHAIN COUPLING; SPIN GAP; ANTIFERROMAGNETIC LONG RANGE ORDER; CRITICAL EXPONENTS; QUANTUM MONTE CARLO SIMULATION;
D O I
10.1143/JPSJ.63.4529
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The quantum phase transition between a spin gap state and an antiferromagnetic phase is investigated. We study S = 1/2 antiferromagnetic Heisenberg chains coupled by antiferromagnetic interchain interaction. The intrachain exchanges have alternating strength. The phase boundary between the antiferromagnetically ordered phase and a spin gap phase is also obtained in a parameter space of the amplitude of the interchain coupling and the dimerization. The spin-wave approximation substantially overestimates the antiferromagnetic phase. The competition between the long range order and the spin gap is examined in detail. We estimate a variety of critical exponents at the transition, namely, exponents v, theta and z defined as the exponent of the correlation length, the magnetization curve and the dynamical exponent, respectively. From the quantum Monte Carlo simulation, the exponents v, theta and z are estimated to be unity. The exponents v and theta are different from the estimated values in one dimension. It suggests that the universality changes due to the dimensionality change. In our estimates, the exponent v does not agree with the prediction from three dimensional classical Heisenberg model. We also discuss the relevance of our result to spin-Peierls systems with lattice distortion.
引用
收藏
页码:4529 / 4541
页数:13
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