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通过量子蒙特卡罗模拟从 Kagome 晶格上的 Z_2 自旋液体的自旋动力学诊断分数化。

Diagnosing Fractionalization from the Spin Dynamics of Z_{2} Spin Liquids on the Kagome Lattice by Quantum Monte Carlo Simulations.

机构信息

Institut für Theoretische Festkörperphysik, JARA-FIT and JARA-HPC, RWTH Aachen University, 52056 Aachen, Germany.

出版信息

Phys Rev Lett. 2018 Aug 17;121(7):077202. doi: 10.1103/PhysRevLett.121.077202.

Abstract

Based on large-scale quantum Monte Carlo simulations, we examine the dynamical spin structure factor of the Balents-Fisher-Girvin kagome lattice spin-1/2 model, which is known to harbor an extended Z_{2} quantum spin liquid phase. We use a correlation-matrix sampling scheme combined with a stochastic analytic continuation method to resolve the spectral functions of this anisotropic quantum spin model with a three-site unit cell. Based on this approach, we monitor the spin dynamics throughout the phase diagram of this model, from the XY-ferromagnetic region to the Z_{2} quantum spin liquid regime. In the latter phase, we identify a gapped two-spinon continuum in the transverse scattering channel, which is faithfully modeled by an effective spinon tight-binding model. Within the longitudinal channel, we identify gapped vison excitations and exhibit indications for the translational symmetry fractionalization of the visons via an enhanced spectral periodicity.

摘要

基于大规模量子蒙特卡罗模拟,我们研究了众所周知具有扩展的 Z_{2}量子自旋液体相的巴拉恩斯-费舍尔-吉文菱格自旋-1/2 模型的动态自旋结构因子。我们使用相关矩阵采样方案结合随机解析延拓方法来解析具有三站点元胞的各向异性量子自旋模型的谱函数。基于这种方法,我们监测了这个模型的整个相图中的自旋动力学,从 XY 铁磁区域到 Z_{2}量子自旋液体区。在后一相中,我们在横向散射通道中识别出一个有能隙的双自旋子连续体,它被一个有效的自旋子紧束缚模型准确地模拟。在纵向通道中,我们识别出有能隙的虚子激发,并通过增强的谱周期性显示出虚子平移对称性分数化的迹象。

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