English

The $\bar{D}^* \bar{D}^* \Sigma_c$ Three-Body System

High Energy Physics - Phenomenology 2019-02-19 v2 High Energy Physics - Experiment High Energy Physics - Lattice Nuclear Theory

Abstract

In the molecular picture the hidden-charm, pentaquark-like Pc(4450)P_c(4450) resonance is a DˉΣc\bar{D}^* \Sigma_c bound state with quantum numbers I=12I=\tfrac{1}{2} and JP=32J^P = \tfrac{3}{2}^-. If this happens to be the case, it will be natural to expect the existence of DˉDˉΣc\bar{D}^* \bar{D}^* \Sigma_c three-body bound states. The most probable quantum numbers for a bound DˉDˉΣc\bar{D}^* \bar{D}^* \Sigma_c trimer are the isoscalar JP=12+J^P = \tfrac{1}{2}^+, 52+\tfrac{5}{2}^+ and the isovector JP=32+J^P = \tfrac{3}{2}^+, 52+\tfrac{5}{2}^+ configurations. Calculations within a contact-range theory indicate a trimer binding energy B335MeVB_3 \sim 3-5\,{\rm MeV} and 1416MeV14-16\,{\rm MeV} for the isoscalar 12+\tfrac{1}{2}^+ and 52+\tfrac{5}{2}^+ states and B313MeVB_3 \sim 1-3\,{\rm MeV} and 35MeV3-5\,{\rm MeV} for the isovector 32+\tfrac{3}{2}^+ and 52+\tfrac{5}{2}^+ states, respectively, with B3B_3 relative to the DˉPc(4450)\bar{D}^* P_c(4450) threshold. These predictions are affected by a series of error sources that we discuss in detail.

Keywords

Cite

@article{arxiv.1811.10173,
  title  = {The $\bar{D}^* \bar{D}^* \Sigma_c$ Three-Body System},
  author = {Manuel Pavon Valderrama},
  journal= {arXiv preprint arXiv:1811.10173},
  year   = {2019}
}

Comments

8 pages, 1 figure, extended discussion on regulator dependence, corresponds to published version

R2 v1 2026-06-23T05:27:25.217Z