An effective theory of anomalous charge diffusion from holography

IF 2.5 3区 物理与天体物理 Q2 PHYSICS, PARTICLES & FIELDS Nuclear Physics B Pub Date : 2024-06-04 DOI:10.1016/j.nuclphysb.2024.116585
Jewel K. Ghosh , M. Arshad Momen
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Abstract

We consider a probe U(1) Maxwell-Chern-Simons theory in 5-dimensions, and analyze the vector perturbations around a classical charged black-brane background. We solve the equations of motion for these perturbations in a derivative expansion. By computing the boundary current, we find that time and spatial derivatives can be interpreted as the induced electric and magnetic field respectively, and the Chern-Simons term contributes to a nonzero divergence of the boundary current which indicates a quantum anomaly. Using holography, we construct a two-derivative effective action for the vector perturbations. By complexifying the radial coordinate, and using appropriate transformation, we construct the full solution on the complexified bulk contour. By computing the on-shell action for the full Schwinger-Keldysh geometry, we obtain the Keldysh functional. We find that the single boundary on-shell action mixes parity, whereas the Keldysh functional does not depend on the Chern-Simons term up to the quadratic orders in derivative expansion.

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来自全息技术的反常电荷扩散有效理论
我们考虑了5维空间的探针U(1) Maxwell-Chern-Simons理论,并分析了经典带电黑膜背景周围的矢量扰动。我们用导数展开求解了这些扰动的运动方程。通过计算边界电流,我们发现时间和空间导数可分别解释为诱导电场和磁场,而切尔-西蒙斯项导致边界电流的非零发散,这表明存在量子反常现象。利用全息技术,我们为矢量扰动构建了一个双衍生有效作用。通过对径向坐标进行复数化,并使用适当的变换,我们在复数化的体轮廓上构建了全解。通过计算完整施文格-凯尔迪什几何的壳上作用,我们得到了凯尔迪什函数。我们发现,单边界壳上作用会混合奇偶性,而凯尔迪什函数在导数展开的二次阶之前并不依赖于切尔-西蒙斯项。
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来源期刊
Nuclear Physics B
Nuclear Physics B 物理-物理:粒子与场物理
CiteScore
5.50
自引率
7.10%
发文量
302
审稿时长
1 months
期刊介绍: Nuclear Physics B focuses on the domain of high energy physics, quantum field theory, statistical systems, and mathematical physics, and includes four main sections: high energy physics - phenomenology, high energy physics - theory, high energy physics - experiment, and quantum field theory, statistical systems, and mathematical physics. The emphasis is on original research papers (Frontiers Articles or Full Length Articles), but Review Articles are also welcome.
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