论文标题

BiLayer Hubbard模型:基于费米子标志问题的分析

Bilayer Hubbard model: Analysis based on the fermionic sign problem

论文作者

Mou, Yingping, Mondaini, Rubem, Scalettar, Richard T.

论文摘要

双层哈伯德模型描述了抗fiferromagnet,以旋转单线转变,并可能是非常规超导体物理学的各个方面。尽管有这些重要的应用,但平面跳跃$ t_ \ perp $与现场相互作用$ U $参数空间的“相位图”的重要方面很大程度上是分歧。在这里,我们提供了一项分析,以利用量子蒙特卡洛模拟中的重要性采样过程中的平均权重迹象,以解决几个中心的开放问题。具体而言,这种重量的指标阐明了有限尺寸的金属机制,价格为小$ u $。此外,在强烈的相互作用下,它指出了从相关到不相关的频带绝缘子的交叉存在,尚未在各种现有的,公正的数值方法中探索。我们的工作证明了在量子蒙特卡洛模拟中使用权重的特性的多功能性来揭示所研究模型的重要物理特征。

The bilayer Hubbard model describes the antiferromagnet to spin singlet transition and, potentially, aspects of the physics of unconventional superconductors. Despite these important applications, significant aspects of its `phase diagram' in the interplane hopping $t_\perp$ versus on-site interaction $U$ parameter space, at half filling, are largely in disagreement. Here we provide an analysis making use of the average sign of weights over the course of the importance sampling in quantum Monte Carlo simulations to resolve several central open questions. Specifically, this metric of the weights clarifies the finite-sized metallic regimes at small $U$. Furthermore, at strong interactions, it points to the existence of a crossover from a correlated to uncorrelated band insulator not yet explored in a variety of existing, unbiased numerical methods. Our work demonstrates the versatility of using properties of the weights in quantum Monte Carlo simulations to reveal important physical characteristics of the models under study.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源