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Quantum tricriticality in antiferromagnetic Ising model with transverse field: A quantum Monte Carlo study

机译:具有横向场的反铁磁伊辛模型中的量子三临界:量子蒙特卡洛研究

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Quantum tricriticality of a J_1-J_2 antiferromagnetic Ising model on a square lattice is studied using the mean-field (MF) theory, scaling theory, and the unbiased worldline quantum Monte-Carlo (QMC) method based on the Feynman path integral formula. The critical exponents of the quantum tricritical point (QTCP) and the qualitative phase diagram are obtained from the MF analysis. By performing the unbiased QMC calculations, we provide the numerical evidence for the existence of the QTCP and numerically determine the location of the QTCP in the case of J_1 = J_2. From the systematic finite-size scaling analysis, we conclude that the QTCP is located at H_(QTCP)/J_1 = 3.260(2) and Γ_(QTCP)/J_1 = 4.10(5). We also show that the critical exponents of the QTCP are identical to those of the MF theory, because the QTCP in this model is in the upper critical dimension. The QMC simulations reveal that unconventional proximity effects of the ferromagnetic susceptibility appear close to the antiferromagnetic QTCP, and the proximity effects survive for the conventional quantum critical point. We suggest that the momentum dependence of the dynamical and static spin structure factors is useful for identifying the OTCP in experiments.
机译:利用均场理论,定标理论和基于费曼路径积分公式的无偏世界线量子蒙特卡洛(QMC)方法研究了正方形晶格上的J_1-J_2反铁磁Ising模型的量子三临界性。通过MF分析获得了量子三临界点(QTCP)的临界指数和定性相图。通过执行无偏QMC计算,我们为QTCP的存在提供了数值证据,并在J_1 = J_2的情况下通过数值确定了QTCP的位置。通过系统的有限尺寸缩放分析,我们得出结论,QTCP位于H_(QTCP)/ J_1 = 3.260(2)和Γ_(QTCP)/ J_1 = 4.10(5)。我们还表明,QTCP的关键指数与MF理论的关键指数相同,因为此模型中的QTCP处于较高的关键维度。 QMC模拟表明,铁磁敏感性的非常规邻近效应似乎与反铁磁QTCP接近,并且该邻近效应在传统的量子临界点中仍然存在。我们建议动态和静态自旋结构因子的动量依赖性对于在实验中识别OTCP是有用的。

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