Entanglement Perturbation Theory for Antiferromagnetic Heisenberg Spin Chains

被引:3
|
作者
Wang, Lihua [1 ,2 ,3 ]
Chung, Sung Gong [1 ,2 ,4 ]
机构
[1] Western Michigan Univ, Dept Phys, Kalamazoo, MI 49008 USA
[2] Western Michigan Univ, Nanotechnol Res & Computat Ctr, Kalamazoo, MI 49008 USA
[3] RIKEN ASI, Computat Condensed Matter Phys Lab, Wako, Saitama 3510198, Japan
[4] Asia Pacific Ctr Theoret Phys, Pohang 790784, Gyeongbuk, South Korea
关键词
spin-1/2; spin-1; finite chain; infinite chain; anisotropy; long-range correlation; variational; MPS; prediction of quantum field theories; QUANTUM GROUND-STATES; RENORMALIZATION-GROUP; DIMENSIONS;
D O I
10.1143/JPSJ.81.114712
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
A recently developed numerical method, entanglement perturbation theory (EPT), is used to study the antiferromagnetic Heisenberg spin chains with z-axis anisotropy lambda and magnetic field B. To demonstrate its accuracy, we first apply EPT to the isotropic spin-1/2 antiferromagnetic Heisenberg model, and find that EPT successfully reproduces the exact Bethe ansatz results for the ground state energy, the local magnetization, and the spin correlation functions (Bethe ansatz result is available for the first seven lattice separations). In particular, EPT confirms for the first time the asymptotic behavior of the spin correlation functions predicted by the conformal field theory, which realizes only for lattice separations larger than 1000. Next, turning on the z-axis anisotropy and the magnetic field, the 2- and 4-spin correlation functions are calculated, and the results are compared with those obtained by bosonization and density matrix renormalization group methods. Finally, for the spin-1 antiferromagnetic Heisenberg model, the ground state phase diagram in lambda space is determined by Roomany-Wyld renormalization group (RG) finite size scaling. The results are in good agreement with those obtained by the level-spectroscopy method.
引用
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页数:10
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