论文标题

在二维游离量子场理论中的纠缠和对称分辨率

Entanglement and symmetry resolution in two dimensional free quantum field theories

论文作者

Murciano, Sara, Di Giulio, Giuseppe, Calabrese, Pasquale

论文摘要

我们对与内部U(1)对称性的自由量子场理论(QFT)的不同对称扇区有关的纠缠熵进行了详尽的分析。我们使用两种不同的方法在大规模和无质量的情况下,在两个时空维度中为狄拉克和复杂标量场的充电时刻提供明确的分析计算。第一个是基于复制技巧,即在插入通量$α$的riemann表面上的分区函数的计算,以及正确修改的扭曲场的引入,其两点函数直接给出了带电矩的缩放限制。使用第二种方法,复制空间中的对角化将问题映射到切割平面上的分区函数的计算,可以准确地根据PainlevéV类型的非线性微分方程的解决方案编写。在这种方法中,我们还得出了带电矩的短距离行为的渐近扩展。最后,傅立叶变换提供了所需的对称性解决的熵:在领先顺序上,它们满足纠缠式的等级,我们确定了打破它的跨倾斜术语。我们的分析结果对晶格模型中的精确数值计算进行了测试。

We present a thorough analysis of the entanglement entropies related to different symmetry sectors of free quantum field theories (QFT) with an internal U(1) symmetry. We provide explicit analytic computations for the charged moments of Dirac and complex scalar fields in two spacetime dimensions, both in the massive and massless cases, using two different approaches. The first one is based on the replica trick, the computation of the partition function on Riemann surfaces with the insertion of a flux $α$, and the introduction of properly modified twist fields, whose two-point function directly gives the scaling limit of the charged moments. With the second method, the diagonalisation in replica space maps the problem to the computation of a partition function on a cut plane, that can be written exactly in terms of the solutions of non-linear differential equations of the Painlevé V type. Within this approach, we also derive an asymptotic expansion for the short and long distance behaviour of the charged moments. Finally, the Fourier transform provides the desired symmetry resolved entropies: at the leading order, they satisfy entanglement equipartition and we identify the subleading terms that break it. Our analytical findings are tested against exact numerical calculations in lattice models.

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