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马约拉纳时间反演对称性:无符号问题量子蒙特卡罗模拟的基本原理。

Majorana-Time-Reversal Symmetries: A Fundamental Principle for Sign-Problem-Free Quantum Monte Carlo Simulations.

作者信息

Li Zi-Xiang, Jiang Yi-Fan, Yao Hong

机构信息

Institute for Advanced Study, Tsinghua University, Beijing 100084, China.

出版信息

Phys Rev Lett. 2016 Dec 23;117(26):267002. doi: 10.1103/PhysRevLett.117.267002.

Abstract

A fundamental open issue in physics is whether and how the fermion sign problem in quantum Monte Carlo (QMC) simulations can be solved generically. Here, we show that Majorana-time-reversal (MTR) symmetries can provide a unifying principle to solve the fermion sign problem in interacting fermionic models. By systematically classifying Majorana-bilinear operators according to the anticommuting MTR symmetries they respect, we rigorously prove that there are two and only two fundamental symmetry classes which are sign-problem-free and which we call the "Majorana class" and "Kramers class," respectively. Novel sign-problem-free models in the Majorana class include interacting topological superconductors and interacting models of charge-4e superconductors. We believe that our MTR unifying principle could shed new light on sign-problem-free QMC simulation on strongly correlated systems and interacting topological matters.

摘要

物理学中一个基本的开放性问题是,量子蒙特卡罗(QMC)模拟中的费米子符号问题能否以及如何得到一般性解决。在此,我们表明马约拉纳时间反演(MTR)对称性可为解决相互作用费米子模型中的费米子符号问题提供一个统一原则。通过根据它们所遵循的反对易MTR对称性对马约拉纳双线性算符进行系统分类,我们严格证明存在且仅存在两个无符号问题的基本对称类,我们分别将其称为“马约拉纳类”和“克莱默斯类”。马约拉纳类中的新型无符号问题模型包括相互作用拓扑超导体和电荷为4e的超导体相互作用模型。我们相信,我们的MTR统一原则可为强关联系统和相互作用拓扑物质的无符号问题QMC模拟带来新的启示。

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