Heavy quark chemical equilibration rate as a transport coefficient
arXiv:1205.4987 · doi:10.1007/JHEP07(2012)130
Abstract
Motivated by indications that heavy (charm and bottom) quarks interact strongly at temperatures generated in heavy ion collision experiments, we suggest a non-perturbative definition of a heavy quark chemical equilibration rate as a transport coefficient. Within leading-order perturbation theory (corresponding to 3-loop level), the definition is argued to reduce to an expression obtained from the Boltzmann equation. Around T ~ 400 MeV, an order-of-magnitude estimate for charm yields a rate Gamma^{-1}_{chem} > 60 fm/c which remains too slow to play a practical role in current experiments. However, the rate increases rapidly with T and, due to non-linear effects, also if the initial state contains an overabundance of heavy quarks.
22 pages. v2: clarifications added, published version
References in corpus (5)
- Heavy Quark Diffusion in Strongly Coupled Yang Mills
- Statistical hadronization of heavy quarks in ultra-relativistic nucleus-nucleus collisions
- Towards flavour diffusion coefficient and electrical conductivity without ultraviolet contamination
- The one-loop and Sommerfeld electroweak corrections to the Wino dark matter annihilation
- The QCD equation of state and the effects of the charm
Cited by in corpus (21)
- Basics of thermal field theory -- a tutorial on perturbative computations
- Rapid thermal co-annihilation through bound states in QCD
- Thermal dark matter co-annihilating with a strongly interacting scalar
- Kubo relations and radiative corrections for lepton number washout
- On thermal corrections to near-threshold annihilation
- Dark Matter Sommerfeld-enhanced annihilation and Bound-state decay at finite temperature
- Re-derived overclosure bound for the inert doublet model
- Coloured coannihilations: Dark matter phenomenology meets non-relativistic EFTs
- Heavy ions at the Future Circular Collider
- Massive vector current correlator in thermal QCD
- Bound-state effects for dark matter with Higgs-like mediators
- Dynamics of heavy flavor quarks in high energy nuclear collisions
- Studies of a thermally averaged p-wave Sommerfeld factor
- Resonant -channel dark matter annihilation at NLO
- Non-relativistic susceptibility and a dark matter application
- Sommerfeld effect in heavy quark chemical equilibration
- Computing singlet scalar freeze-out with plasmon and plasmino states
- Charm mass effects in bulk channel correlations
- Testing Charm Quark Equilibration in Ultra-High Energy Heavy Ion Collisions with Fluctuations
- Heavy Flavours in Quark-Gluon Plasma
- Non-perturbative Enhancement of Heavy Quark-Antiquark Pair Annihilation in the Quark-Gluon Plasma