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May 9, 2026Nuclear Physics B0 citationsOpen Access

The running coupling of a heavy quark-antiquark pair in the STU background

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WCW. S. ChengZZZi-qiang Zhang

Key Points

  • This research aims to evaluate the running coupling of a heavy quark-antiquark pair in the STU black hole background using holographic methods.
  • Computed the Nambu-Goto action for a fundamental string anchored to a Wilson loop.
  • Analyzed the effects of varying black hole charge on free energy and running coupling.
  • Increased black hole charge leads to reduced free energy of the quark-antiquark pair.
  • Running coupling decreases, indicating enhanced thermodynamic stability.
  • Quark-antiquark attractive interactions strengthen while short-range strong interactions weaken.

Abstract

Employing holographic duality, we evaluate the running coupling of a heavy quark-antiquark ( Q Q ¯ ) pair in the STU black hole background by computing the Nambu-Goto action for a fundamental string, whose worldsheet is anchored to a rectangular Wilson loop. It is shown that an increase in the black hole charge leads to a reduction in both the free energy and the running coupling of the Q Q ¯ . This reduction implies a lowering of the free energy of Q Q ¯ , thereby enhancing their thermodynamic stability and strengthening the quark-antiquark attractive interaction, while also weakening the intrinsic short-range strong interaction between quarks by reducing the running coupling of Q Q ¯ .

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Cite This Study

Cheng et al. (2026) studied this question.

synapsesocial.com/papers/69fecf16b9154b0b82876374https://doi.org/10.1016/j.nuclphysb.2026.117490
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