论文标题

QED $ _3 $ -Gross-neveu-Xy通用类中的禁闭过渡类

Confinement transition in the QED$_3$-Gross-Neveu-XY universality class

论文作者

Janssen, Lukas, Wang, Wei, Scherer, Michael M., Meng, Zi Yang, Xu, Xiao Yan

论文摘要

费米子物质和量规场之间的耦合在我们对自然的理解中起着基本作用,同时为理论建模提出了一个具有挑战性的问题。在这种情况下,可以通过结合不同的互补方法来获得受控信息。在这里,我们研究了$ n_f $ n_f $风味的限制过渡,该系统的相互作用的dirac费米子在2+1个维度下收取的u(1)仪表字段。使用量子蒙特卡洛模拟,我们研究了一个晶格模型,该晶格模型在零温度下表现出连续的过渡,这是通过三维量子电动力学描述的无间隙解义相位,并且在该阶段中描述了一个宽大的狭窄相,其中系统会在该相中形成价值 - 支个固体阶。我们认为,量子关键点在QED $ _3 $ -Gross-neveu-Xy模型的​​通用类中。我们在固定尺寸的$ 1/n_f $扩展中研究了该领域理论,以及$4-ε$时空维度的重新规范化组分析。数值和分析结果之间的一致性从大到中间风味数字揭示。

The coupling between fermionic matter and gauge fields plays a fundamental role in our understanding of nature, while at the same time posing a challenging problem for theoretical modeling. In this situation, controlled information can be gained by combining different complementary approaches. Here, we study a confinement transition in a system of $N_f$ flavors of interacting Dirac fermions charged under a U(1) gauge field in 2+1 dimensions. Using Quantum Monte Carlo simulations, we investigate a lattice model that exhibits a continuous transition at zero temperature between a gapless deconfined phase, described by three-dimensional quantum electrodynamics, and a gapped confined phase, in which the system develops valence-bond-solid order. We argue that the quantum critical point is in the universality class of the QED$_3$-Gross-Neveu-XY model. We study this field theory within a $1/N_f$ expansion in fixed dimension as well as a renormalization group analysis in $4-ε$ space-time dimensions. The consistency between numerical and analytical results is revealed from large to intermediate flavor number.

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