${\bar D}D$ meson pair production in antiproton-nucleus collisions
R. Shyam, K. Tsushima

TL;DR
This paper models the production of charm meson pairs in antiproton-nucleus collisions, incorporating medium effects and baryon exchange mechanisms, to predict cross sections relevant for upcoming experiments.
Contribution
It introduces a comprehensive effective Lagrangian model including medium modifications of exchanged baryons for charm meson pair production in antiproton-induced reactions.
Findings
Medium effects enhance charm meson production cross sections.
Detailed cross section predictions for ${ar D}^0 D^0$ and $D^-D^+$ on various nuclei.
Results are relevant for the ${ar P}ANDA$ experiment.
Abstract
We study the ( and ) charm meson pair production in antiproton () induced reactions on nuclei at beam energies ranging from threshold to several GeV. Our model is based on an effective Lagrangian approach that has only the baryon-meson degrees of freedom and involves the physical hadron masses. The reaction proceeds via the -channel exchanges of , , and baryons in the initial collision of the antiproton with one of the protons of the target nucleus. The medium effects on the exchanged baryons are included by incorporating in the corresponding propagators, the effective charm baryon masses calculated within a quark-meson coupling (QMC) model. The wave functions of the bound proton have been determined within the QMC model as well as in a phenomenological model where they are obtained by solving the…
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