Pole-skipping as order parameter to probe a quantum critical point

Author:

Abbasi Navid,Landsteiner KarlORCID

Abstract

Abstract The holographic system described by Einstein-Maxwell-Chern-Simons dynamics in the bulk of AdS exhibits a chiral magnetic effect and a quantum critical point. Through numerical calculations, we find that the butterfly velocity can serve as a new identifier for the quantum critical point in this system. We show that the critical point is the point at which the butterfly velocity is equal to the speed of light in the direction of the magnetic field, while in the opposite direction the butterfly propagation vanishes. Furthermore, by studying the pole-skipping points of the response function of the operator dual to the tensor part of the metric perturbation in the bulk, we discover a set of order parameters that distinguish the two states of the system near the quantum critical point. Each of these order parameters is the sum of the absolute values of the real parts of momentum at all pole-skipping points associated with a particular frequency. This quantity vanishes in the disordered state while taking a positive value in the ordered state. In addition, our results confirm the idea that the chiral magnetic effect can manifest macroscopically through quantum chaos.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Pole-skipping for massive fields and the Stueckelberg formalism;Journal of High Energy Physics;2024-07-26

2. On pole-skipping with gauge-invariant variables in holographic axion theories;Journal of High Energy Physics;2024-06-05

3. Pole-skipping and chaos in hot$$\mathcal{M}{\text{QCD}}$$;Journal of High Energy Physics;2024-05-02

4. Deep learning bulk spacetime from boundary optical conductivity;Journal of High Energy Physics;2024-03-26

5. Pole skipping in holographic theories with gauge and fermionic fields;Journal of High Energy Physics;2023-12-13

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