arXiv:2605.31280·v1·High Energy Physics — Phenomenology
Thermodynamics of the Isospectral family of holographic vector mesons
Miguel Angel Martin Contreras · Saulo Diles · Alfredo Vega
Abstract
We study the thermal behavior of the meson using the isospectral family of the softwall AdS/QCD model. By computing spectral functions at finite temperature and chemical potential for different members of this family, we isolate the effect of the ground-state electromagnetic decay constant on the melting temperature of the meson. A clear monotonic increase of with is found, supporting the interpretation of as a key scale controlling quarkonium dissociation. For excited states, the same qualitative trend appears but is strongly suppressed as the radial quantum number increases. Using the isospectral parameter to fix to its experimental value ( MeV) yields a holographic model whose spectral function gives a melting temperature MeV and a smooth crossover from confinement to deconfinement. The thermal mass shows a mild decrease near the critical point, while the width grows monotonically. Our results demonstrate that the isospectral transformation provides a controlled way to adjust ground-state decay constants without altering the mass spectrum, enabling precise studies of medium effects on vector mesons.
Comments: 15 pages, 7 figures, 1 table