Recombination of $B_c$ mesons in ultra-relativistic heavy-ion collisions
Biaogang Wu, Zhanduo Tang, Min He, Ralf Rapp

TL;DR
This paper models the production and regeneration of $B_c$ mesons in ultra-relativistic heavy-ion collisions, predicting significant enhancement at low transverse momentum and comparing results with CMS data.
Contribution
It introduces a transport approach for $B_c$ mesons incorporating in-medium effects and two recombination models, providing new insights into their production in heavy-ion collisions.
Findings
Large $R_{AA}$ enhancement at low $p_T$
Significant regeneration contributions up to 20 GeV
Uncertainty dominated by $pp$ cross section and decay branching ratio
Abstract
High-energy heavy-ion collisions have been suggested as a favorable environment for the production of mesons, due to a much larger abundance of charm and bottom quarks compared to elementary reactions. Motivated by recent CMS data for production in Pb-Pb(TeV) collisions at the LHC, we deploy a previously developed transport approach for charmonia and bottomonia to evaluate the kinetics of mesons throughout the fireball formed in these reactions. The main inputs to our approach are two transport parameters: the 's reaction rate and equilibrium limit. Both quantities are determined by previous calculations via a combination of charm and bottom sectors. In-medium binding energies of mesons are calculated from a thermodynamic -matrix with a lattice-QCD constrained potential, and figure in their inelastic reaction rates. Temperature-dependent…
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Taxonomy
TopicsHigh-Energy Particle Collisions Research · Particle physics theoretical and experimental studies · Quantum Chromodynamics and Particle Interactions
