Matrix product wave function of the ground state and elementary excitations in the spin- 12 chain

Jintae Kim, Minsoo P. Kim, Pramod Padmanabhan, J. Han, Hyunyong Lee
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Abstract

We present a variational matrix product state (vMPS) for the ground state of the spin-1/2 Heisenberg model. The MPS effectively organizes the various dimer configurations, in faithful reflection of the resonating valence bond (RVB) picture of the spin liquid, with the energy only 0.024% higher than the exact value given by Bethe ansatz. Building on the ground-state vMPS, the one-spin wave function is constructed in a simple manner with the dispersion that matches well with the exact spectrum. The vMPS scheme is applied to the family of Hamiltonian extrapolating between the Heisenberg model and the Majumdar-Ghosh model.
自旋-12链中基态和基本激发的矩阵积波函数
我们提出了自旋1/2海森堡模型基态的变分矩阵积态(vMPS)。MPS有效地组织了各种二聚体构型,忠实地反映了自旋液体的共振价键(RVB)图,能量仅比Bethe ansatz给出的精确值高0.024%。在基态vMPS的基础上,以一种简单的方式构建了单自旋波函数,其色散与精确的谱相匹配。将vMPS格式应用于海森堡模型和Majumdar-Ghosh模型之间的哈密顿外推族。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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