Published May 2, 2024 | Version v1
Journal article Open

Molecular pentaquarks with hidden charm and double strangeness

  • 1. Departamento de Física, Universidad de Murcia, E-30100 Murcia, Spain
  • 2. School of Physics, Beihang University, Beijing 102206, China and Departamento de Física Teórica and IFIC, Centro Mixto Universidad de Valencia-CSIC Institutos de Investigación de Paterna, Apartado 22085, 46071 Valencia, Spain
  • 3. Departamento de Física Teórica and IFIC, Centro Mixto Universidad de Valencia-CSIC Institutos de Investigación de Paterna, Apartado 22085, 46071 Valencia, Spain

Description

We analyze theoretically the coupled-channel meson-baryon interaction with global flavor c¯cssn and c¯csss, where mesons are pseudoscalars or vectors, and baryons have JP=1/2+ or 3/2+. The aim is to explore whether the nonlinear dynamics inherent in the unitarization process within coupled channels can dynamically generate double- and triple-strange pentaquark-type states (Pcss and Pcsss, respectively), for which there is no experimental evidence to date. We evaluate the s-wave scattering matrix by implementing unitarity in coupled channels, using potential kernels obtained from t-channel vector meson exchange. The required PPV and VVV vertices are obtained from Lagrangians derived through appropriate extensions of the local hidden gauge symmetry approach to the charm sector, while capitalizing on the symmetry of the spin and flavor wave function to evaluate the BBV vertex. We find four different poles in the double strange sector, some of them degenerate in spin. For the triple-strange channel, we find the meson-baryon interaction insufficient to generate a bound or resonance state through the unitary coupled-channel dynamics.

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10.1103_PhysRevD.109.094005.pdf

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Additional details

Identifiers

DOI
10.1103/PhysRevD.109.094005;
arXiv
arXiv:2403.08732;
Crossref Funder ID
10.13039/501100003329; 10.13039/501100008530; 10.13039/501100003359; 10.13039/100010661; 10.13039/501100001809; 10.13039/501100002858;

Publishing Information

Journal Title
Physical Review D
Journal Volume
109
Journal Issue
9
Journal Page Range
8 pgs.
ISSN
1089-4918