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Low-Temperature Holographic Conductivity

High Energy Physics - Theory 2026-07-13 v1 Strongly Correlated Electrons General Relativity and Quantum Cosmology

Abstract

We revisit holographic electrical conductivity in the regime of very low temperatures where quantum fluctuations in the throat of the near-extremal, asymptotically AdS4_4 dual black brane are strongly coupled. We treat the fluctuations via an effective two-dimensional action capturing the effects of the Schwarzian modes at the scale 1/C1/C. Our main result is a non-monotonic temperature dependence: the quantum-corrected conductivity decreases as the temperature is lowered, reaches a minimum at (CTmin0.023)(CT_{\mathrm{min}}\simeq 0.023), and grows as (1/CT)(1/\sqrt{CT}) for (CT1)(CT\ll 1). We further estimate the one-loop contribution to the conductivity directly from the four-dimensional gravitational path integral and find qualitative agreement with the effective two-dimensional description in the regime (CT1)(CT\gg 1). We find that quantum corrections substantially modify the low-temperature behavior of the holographic conductivity in both approaches.

Cite

@article{arxiv.2607.12064,
  title  = {Low-Temperature Holographic Conductivity},
  author = {Sabyasachi Maulik and Leopoldo A. Pando Zayas and Jingchao Zhang},
  journal= {arXiv preprint arXiv:2607.12064},
  year   = {2026}
}

Comments

35 pages, 9 figures