Thermal charm production by massive gluons and quarks
arXiv:hep-ph/9704360 · doi:10.1103/PhysRevC.56.2707
Abstract
We investigate charm production in an equilibrated quark-gluon plasma produced in heavy-ion collisions at RHIC and LHC. Effective quark and gluon masses are introduced from thermal QCD calculations. Assuming a Bjorken-type longitudinal expansion and including the influence of temperature dependent masses on the expansion, we determine the total number of c\bar{c} pairs produced in the quark-gluon plasma phase. We calculate the charm production rate at leading order with massive gluons and quarks and compare our result to charm production by massless partons. We consider two different scenarios for the initial conditions, a parton gas with a rather long kinetic equilibration time and a minijet gas with a short equilibration time. In a parton gas, assuming m_c=1.2 GeV, we obtain a substantial enhancement over the thermal charm rate from massless quarks and gluons, up to 4.9 secondary charm quark pairs in Au+Au collisions at RHIC and 245 charm pairs in Pb+Pb collisions at the LHC.
19 pages in Latex and 9 Postscript figures
Cited by in corpus (13)
- Massive gluons and quarks and the equation of state obtained from SU(3) lattice QCD
- Hard-thermal-loop Resummation of the Thermodynamics of a Hot Gluon Plasma
- Heavy quark production at RHIC and LHC within a partonic transport model
- Thermal Charm Production in Quark-Gluon Plasma at LHC
- Hard Probes in Heavy Ion Collisions at the LHC: Jet Physics
- Yield correlations and dependence of charm hadrons in Pb + Pb collisions at TeV
- Measurements of Non-photonic Electron Production and Azimuthal Anisotropy in , 62.4 and 200 GeV \auau\ Collisions from STAR at RHIC
- Measurement of D meson production in p-Pb collisions with the ALICE detector
- Elliptic flow and of D mesons at FAIR comparing the UrQMD hybrid model and the coarse-graining approach
- Components of the dilepton continuum in Pb+Pb collisions at TeV
- Thermal production of charm quarks in heavy ion collisions at Future Circular Collider
- On the Distribution of 's Produced in Heavy Ion Collisions
- ALICE Overview