A holographic bottom-up description of light nuclide spectroscopy and stability
arXiv:2206.01834 · doi:10.1016/j.physletb.2022.137551
Abstract
This work explores a holographic proposal to describe light nuclide spectroscopy by considering extensions to the well-known bottom-up AdS/QCD proposals, the hardwall and softwall models. We also propose an alternative description inspired by the Woods-Saxon potential. We find the static dilaton associated with this potential in this Wood-Saxon-like model. We compute the nuclide spectra finding that, despite their pure AdS/QCD origin, hardwall and softwall, as monoparametric models, have good accuracy and precision since the RMS error is near 11 and 4 respectively. In the case of the Wood-Saxon model, the RMS was around 1 . We also discuss configurational entropy as a tool to categorize which model is suitable to describe nuclides in terms of stability. We found that configurational entropy resembles a stability line, independent from nuclear spin, for symmetric light nuclides when considering softwall and Wood-Saxon-like models. For the hardwall case, configurational entropy, despite increasing with the constituent number, depends on the nuclear spin. Thus, the Woods-Saxon-like model emerges as the best choice to describe light nuclide spectroscopy in the bottom-up scenario.
10 pages, 1 figures
References in corpus (14)
- Viscosity in Strongly Interacting Quantum Field Theories from Black Hole Physics
- Linear Confinement and AdS/QCD
- Hadronic Spectra and Light-Front Wavefunctions in Holographic QCD
- Light scalar mesons in the soft-wall model of AdS/QCD
- Information Content of Spontaneous Symmetry Breaking
- Conditional entropy of glueball states
- Configurational entropy of anti-de Sitter black holes
- AdS/QCD duality and the quarkonia holographic information entropy
- Nuclear physics in soft-wall AdS/QCD: Deuteron electromagnetic form factors
- Pion family in AdS/QCD: the next generation from configurational entropy
- Nucleons and higher spin baryon resonances: an AdS/QCD configurational entropic incursion
- Gauge/Gravity Duality and Hadron Physics at the Light-Front
- Information in AdS/QCD: mass spectroscopy of isovector mesons
- Spontaneous chiral symmetry breaking in holographic soft wall models