English

Strangeness and Charm in Nuclear Matter

Nuclear Theory 2015-06-12 v1 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

The properties of strange (KK, Kˉ\bar K and Kˉ\bar K^*) and open-charm (DD, Dˉ\bar D and DD^*) mesons in dense matter are studied using a unitary approach in coupled channels for meson-baryon scattering. In the strangeness sector, the interaction with nucleons always comes through vector-meson exchange, which is evaluated by chiral and hidden gauge Lagrangians. For the interaction of charmed mesons with nucleons we extend the SU(3) Weinberg-Tomozawa Lagrangian to incorporate spin-flavor symmetry and implement a suitable flavor symmetry breaking. The in-medium solution for the scattering amplitude accounts for Pauli blocking effects and meson self-energies. On one hand, we obtain the KK, Kˉ\bar K and Kˉ\bar K^* spectral functions in the nuclear medium and study their behaviour at finite density, temperature and momentum. We also make an estimate of the transparency ratio of the γAK+KA\gamma A \to K^+ K^{*-} A^\prime reaction, which we propose as a tool to detect in-medium modifications of the Kˉ\bar K^* meson. On the other hand, in the charm sector, several resonances with negative parity are generated dynamically by the s-wave interaction between pseudoscalar and vector meson multiplets with 1/2+1/2^+ and 3/2+3/2^+ baryons. The properties of these states in matter are analyzed and their influence on the open-charm meson spectral functions is studied. We finally discuss the possible formation of DD-mesic nuclei at FAIR energies.

Keywords

Cite

@article{arxiv.1211.7286,
  title  = {Strangeness and Charm in Nuclear Matter},
  author = {Laura Tolos and Daniel Cabrera and Carmen Garcia-Recio and Raquel Molina and Juan Nieves and Eulogio Oset and Angels Ramos and Olena Romanets and Lorenzo Luis Salcedo},
  journal= {arXiv preprint arXiv:1211.7286},
  year   = {2015}
}

Comments

8 pages, 9 figures, invited plenary talk, to appear in proceedings of the XI International Conference on Hypernuclear and Strange Particle Physics (HYP2012), Barcelona, October 1 - 5, 2012

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