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Sign-Problem-Free Fermionic Quantum Monte Carlo: Developments and Applications

机译:签署无问题的Fermionic Quantum Monte Carlo:开发和应用

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摘要

Reliable simulations of correlated quantum systems, including hightemperature superconductors and frustrated magnets, are increasingly desired nowadays to further our understanding of essential features in such systems. Quantum Monte Carlo (QMC) is a unique numerically exact and intrinsically unbiased method to simulate interacting quantum many-body systems. More importantly, when QMC simulations are free from the notorious fermion sign problem, they can reliably simulate interacting quantum models with large system size and low temperature to reveal low-energy physics such as spontaneously broken symmetries and universal quantum critical behaviors. Here, we concisely review recent progress made in developing new sign-problem-free QMC algorithms, including those employing Majorana representation and those utilizing hot-spot physics. We also discuss applications of these novel sign-problem-free QMC algorithms in simulations of various interesting quantum many-body models. Finally, we discuss possible future directions of designing sign-problem-free QMC methods.
机译:如今,在包括高温超导体和沮丧的磁体的可靠性模拟,现在越来越多地期望我们对这种系统中的基本特征进行进一步理解。量子蒙特卡罗(QMC)是一种唯一的数值精确和本质上无偏见的方法,用于模拟相互作用的量子多体系统。更重要的是,当QMC仿真没有臭名昭着的Fermion标志问题时,它们可以可靠地模拟具有大系统尺寸和低温的相互作用的量子模型,以显示低能量物理,例如自发破损的对称性和通用量子临界行为。在这里,我们简明扼要地审查了在开发新的符号无问题的QMC算法方面取得的进展,包括雇用Majorana表示和利用热点物理学的人的进展。我们还讨论了这些新颖的无问题的QMC算法的应用,以模拟各种有趣量子的量子模型。最后,我们讨论了未来设计符号无问题的QMC方法的方向。

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