Strangeness and charm at FAIR
arXiv:0812.1460
Abstract
We study the properties of strange and charm mesons in hot and dense matter within a self-consistent coupled-channel approach for the experimental conditions of density and temperature expected for the CBM experiment at FAIR/GSI. The in-medium solution at finite temperature accounts for Pauli blocking effects, mean-field binding on all the baryons involved, and meson self-energies. In the strange sector, the spectral function spreads over a wide range of energies, reflecting the melting of the resonance and the contribution of components at finite temperature. In the case of charm mesons, the dynamically-generated and resonances remain close to their free-space position while acquiring a remarkable width. As a result, the meson spectral density shows a single pronounced peak for energies close to the meson free-space mass that broadens with increasing matter density with an extended tail particularly towards lower energies. We also discuss the implications for the , and the predicted X(3700) resonances at FAIR energies.
5 pages, 4 figures, to appear in Proceedings of Quark Confinement and the Hadron Spectrum 8 Conference (Confinement8), Mainz (Germany), September 1-6, 2008
References in corpus (6)
- Dynamically Generated Open and Hidden Charm Meson Systems
- Search for new charmonium states in the processes e+ e- --> J/psi D(*) D(*) at sqrt{s} ~ 10.6 GeV
- Open charm in nuclear matter at finite temperature
- Hidden charm dynamically generated resonances and the , reactions
- Strange mesons in nuclear matter at finite temperature
- Antikaons and hyperons in nuclear matter with saturation