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arXiv:2307.07470·v1·High Energy Physics — Phenomenology

Charm-Meson -channel Singularities in an Expanding Hadron Gas

Eric Braaten🇺🇸 · Roberto Bruschini🇺🇸 · Li-Ping He🇩🇪 · Kevin Ingles🇺🇸 · Jun Jiang🇨🇳

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Abstract

We study the time evolution of the numbers of charm mesons after the kinetic freezeout of the expanding hadron gas produced by the hadronization of the quark-gluon plasma from a central heavy-ion collision. The reaction rates have contributions from a resonance in the channel. The reaction rates are enhanced by -channel singularities from an intermediate . The contributions to reaction rates from resonances and -meson -channel singularities are sensitive to thermal mass shifts and thermal widths. In the expanding hadron gas, the -channel singularities are regularized by the thermal widths. After kinetic freezeout, the thermal widths are dominated by coherent pion forward scattering. The contributions to reaction rates from -channel singularities are inversely proportional to the pion number density, which decreases to 0 as the hadron gas expands. The -channel singularities produce small but significant changes in charm-meson ratios from those predicted using the known -decay branching fractions.

Comments: 41 pages, 12 figures

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