Thermal Self-Energy of a Charm-Meson Molecule in a Pion Gas
ORAL
Abstract
The thermal corrections to the propagator of a loosely bound charm-meson molecule in a pion gas are calculated to next-to-leading order in the heavy-meson expansion using a zero-range effective field theory. Ultraviolet divergences in the charm-meson-pair self energy are canceled by corrections to the charm-meson-pair contact vertex. Terms that are singular at the charm-meson-pair threshold can be absorbed into thermal corrections to the rest energies and kinetic masses of the charm-meson constituents. The remaining terms reduce to a thermal correction to the binding momentum that is proportional to the pion number density and suppressed by the pion/charm-meson mass ratio. The correction gives a tiny decrease in the binding energy of the charm-meson molecule relative to the charm-meson-pair threshold in the pion gas and a change in its thermal width that is small compared to the thermal widths of the charm-meson constituents. These results are encouraging for the prospects of observing $X(3872)$ and $T_{cc}^+(3875)$ in the expanding hadron gas produced by
heavy-ion collisions.
heavy-ion collisions.
*This work was supported in part by the U.S. Department of Energy under grant DE-SC0011726, by the National Natural Science Foundation of China (NSFC) under grant 11905112, by the Alexander von Humboldt Research Foundation, and by the NSFC and the Deutsche Forschungsgemeinschaft (DFG) through the Sino-German Collaborative Research Center TRR110 (NSFC grant 12070131001, DFG Project-ID 196253076-TRR110)
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Publication: Eric Braaten (Ohio State U.), Li-Ping He (Bonn U., HISKP), Kevin Ingles (Ohio State U.), Jun Jiang (Shandong U.)
Thermal Energy of a Charm-meson Molecule in a Pion Gas
e-Print:
2303.08072
[hep-ph]
Presenters
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Kevin C Ingles
- Ohio State University