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Quantum-Corrected Holographic Wilson Loop Expectation Values and Super-Yang-Mills Confinement

High Energy Physics - Theory 2025-04-16 v2 General Relativity and Quantum Cosmology High Energy Physics - Phenomenology Mathematical Physics math.MP Nuclear Theory

Abstract

Confinement is a well-known phenomenon in the infrared regime of (supersymmetric) Yang-Mills theory. While both experimental observations and numerical simulations have robustly confirmed its existence, the underlying physical mechanism remains elusive. Unraveling the theoretical origin of confinement continues to be a profound and longstanding challenge in both physics and mathematics. Motivated by recent advances in quantum Jackiw-Teitelboim gravity, we investigate the Wilson loop expectation values in the large-NN limit of N=4\mathscr{N}=4 super-Yang-Mills theory at finite chemical potential, employing a holographic approach within the background of an extremal AdS5_5 Reissner-Nordstr\"om black brane. Our results reveal that quantum gravitational fluctuations in the near-horizon region significantly modify the holographic Wilson loop expectation values. These values exhibit an area-law behavior, indicative of a confining quark-antiquark potential. Within this framework, our findings suggest that confinement in the super-Yang-Mills theory arises as a consequence of near-horizon quantum gravity fluctuations in the bulk extremal AdS5_5 black brane geometry.

Keywords

Cite

@article{arxiv.2412.11107,
  title  = {Quantum-Corrected Holographic Wilson Loop Expectation Values and Super-Yang-Mills Confinement},
  author = {Xiao-Long Liu and Cong-Yuan Yue and Jun Nian and Wenni Zheng},
  journal= {arXiv preprint arXiv:2412.11107},
  year   = {2025}
}

Comments

5 pages + 4 appendices, 5 figures; V2: Fig.1 and App.A added, computations improved, more discussions added, and main results unchanged

R2 v1 2026-06-28T20:35:42.212Z