PURE BULK CAVITY MODES, AdS5 SHEAR RESONANCES, AND THE NON-HADRONIC X(2370) STRUCTURE: BEYOND THE GLUEBALL HYPOTHESIS (XLIII v6)

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Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-16
DOI
https://doi.org/10.5281/zenodo.22802795
Primary Topic
Black Holes and Theoretical Physics
Type
preprint
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preprint

PURE BULK CAVITY MODES, AdS5 SHEAR RESONANCES, AND THE NON-HADRONIC X(2370) STRUCTURE: BEYOND THE GLUEBALL HYPOTHESIS (XLIII v6)

Ricardo J Miralles
Zenodo (CERN European Organization for Nuclear Research)
Black Holes and Theoretical Physics
preprint

PURE BULK CAVITY MODES, AdS5 SHEAR RESONANCES, AND THE NON-HADRONIC X(2370) STRUCTURE: BEYOND THE GLUEBALL HYPOTHESIS (XLIII v6)

Ricardo J Miralles
preprint en

Abstract

The recent high-significance ($11.7\sigma$) observation of the $X(2370)$ resonance at $2.37\text{ GeV}$ by the BESIII Collaboration has been widely interpreted within conventional Lattice Quantum Chromodynamics (QCD) as a candidate for a scalar/pseudoscalar "glueball"—a bound state composed purely of gauge bosons. In this paper, within the pregeometric framework of $\text{FCD-RBv6}$, we demonstrate that 4D gauge boson self-coupling is a effective projection of 5D bulk shear elasticity, and we formally refute the glueball paradigm. By modeling the $\text{AdS}_5$inter-brane throat as a closed elastic resonant cavity under free Dirichlet boundary conditions (devoid of valence quark nodes), we derive the fundamental radial-torsional shear mode driven by the Bessel root $x_{01}\pi \approx 7.55498$. Using only the Compton centrifugal floor radius $R_0 = 0.6308\text{ fm}$ and $\hbar c$, we predict an exact ab initio resonance energy of $E_{\text{theoretical}} = 2362.41\text{ MeV}$, exhibiting a deviation of merely $0.32\%$ from the experimental value of $2370\text{ MeV}$. Furthermore, we explain the absence of valence quarks in $X(2370)$ decays through elastic shear relaxation of the bulk, link its energy to the $2.51\text{ MeV}$ sub-hadronic mass quantum, and establish a falsifiable matrix predicting higher excited cavity modes ($x_{02}\pi = 5420.73\text{ MeV}$ and $x_{03}\pi = 8500.22\text{ MeV}$) for upcoming collider searches.

Zenodo (CERN European Organization for Nuclear Research)
Black Holes and Theoretical Physics
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