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Wilson Loop, Regge Trajectory and Hadron Masses in a Yang-Mills Theory from Semiclassical Strings

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arxiv hep-th/0409205 v3 pith:LWSE5NR4 submitted 2004-09-20 hep-th hep-ph

classification hep-thhep-ph
keywords stringsstringtheorycorrectionsloopreggetrajectorywilson
verification ladder T0 review T1 audit T2 compute T3 formal
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We compute the one-loop string corrections to the Wilson loop, glueball Regge trajectory and stringy hadron masses in the Witten model of non supersymmetric, large-N Yang-Mills theory. The classical string configurations corresponding to the above field theory objects are respectively: open straight strings, folded closed spinning strings, and strings orbiting in the internal part of the supergravity background. For the rectangular Wilson loop we show that besides the standard Luescher term, string corrections provide a rescaling of the field theory string tension. The one-loop corrections to the linear glueball Regge trajectories render them nonlinear with a positive intercept, as in the experimental soft Pomeron trajectory. Strings orbiting in the internal space predict a spectrum of hadronic-like states charged under global flavor symmetries which falls in the same universality class of other confining models.

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

    hep-th 2024-12 conditional novelty 5.0 of 10

    Near-horizon quantum gravity fluctuations in an extremal AdS5-Reissner-Nordström black brane make the holographic Wilson loop obey an area law, producing a linear quark-antiquark potential at zero temperature.

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