论文标题

巨人威尔逊循环和广告$ _2 $/dcft $ _1 $

Giant Wilson Loops and AdS$_2$/dCFT$_1$

论文作者

Giombi, Simone, Jiang, Jiaqi, Komatsu, Shota

论文摘要

$ \ Mathcal {n} = 4 $超对称Yang-Mills理论的1/2-BPS Wilson循环是保形缺陷的重要典型。特别是,在基本代表中,在威尔逊循环上插入操作员插入的相关功能已经完成了许多工作。在本文中,我们将这种分析扩展到Wilson循环中,以大型对称和反对称表示形式,对应于带有$ ads_2 \ times S^2 $和$ ads_2 \ times s^4 $ WorldVolume Geomerties的Probe D3和D5 Branes,以$ ADS_5 $ condimention contourirors结束。我们首先计算从超对称定位的受保护标量插入的相关函数,并根据多个积分来获得与随机矩阵的特征值积分相似的多个积分的表示,但具有重要差异。利用费米气体形式主义和聚类方法中的想法,我们将其大于$ n $限制的限制完全取决于't Hooft耦合。结果由类似于量子光谱曲线的$ Q $函数的多项式的简单积分给出,并取决于插入的数量,并采用集成度量。接下来,我们研究ADS中探针D3和D5 Branes上波动的相关函数。我们从D-BRANES上的扰动理论中计算出三分和四点函数的选择,并表明它们与限制在超对称运动学时的定位结果一致。我们还解释了D3和D5 Branes的内部几何形状的差异如何在本地化计算中表现出来。

The 1/2-BPS Wilson loop in $\mathcal{N}=4$ supersymmetric Yang-Mills theory is an important and well-studied example of conformal defect. In particular, much work has been done for the correlation functions of operator insertions on the Wilson loop in the fundamental representation. In this paper, we extend such analyses to Wilson loops in the large-rank symmetric and antisymmetric representations, which correspond to probe D3 and D5 branes with $AdS_2 \times S^2$ and $AdS_2 \times S^4$ worldvolume geometries, ending at the $AdS_5$ boundary along a one-dimensional contour. We first compute the correlation functions of protected scalar insertions from supersymmetric localization, and obtain a representation in terms of multiple integrals that are similar to the eigenvalue integrals of the random matrix, but with important differences. Using ideas from the Fermi Gas formalism and the Clustering method, we evaluate their large $N$ limit exactly as a function of the 't Hooft coupling. The results are given by simple integrals of polynomials that resemble the $Q$-functions of the Quantum Spectral Curve, with integration measures depending on the number of insertions. Next, we study the correlation functions of fluctuations on the probe D3 and D5 branes in AdS. We compute a selection of three- and four-point functions from perturbation theory on the D-branes, and show that they agree with the results of localization when restricted to supersymmetric kinematics. We also explain how the difference of the internal geometries of the D3 and D5 branes manifests itself in the localization computation.

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