Quark-gluon plasma phenomenology from the lattice
arXiv:1310.5135 · doi:10.1088/1742-6596/509/1/012015
Abstract
The FASTSUM Collaboration has calculated several quantities relevant for QCD studies at non-zero temperature using the lattice technique. We report here our results for the (i) interquark potential in charmonium; (ii) bottomonium spectral functions; and (iii) electrical conductivity. All results were obtained with 2+1 flavours of dynamical fermions on an anisotropic lattice which allows greater resolution in the temporal direction.
Plenary talk presented at the Strangeness in Quark Matter SQM 2013, Birmingham UK, 21-27 July 2013
References in corpus (13)
- Nuclear Force from Lattice QCD
- Spectral functions at small energies and the electrical conductivity in hot, quenched lattice QCD
- Electrical conductivity of the quark-gluon plasma across the deconfinement transition
- Can quarkonia survive deconfinement ?
- Tuning for Three-flavors of Anisotropic Clover Fermions with Stout-link Smearing
- Bottomonium above deconfinement in lattice nonrelativistic QCD
- Complex Langevin dynamics and other approaches at finite chemical potential
- Lattice QCD approach to Nuclear Physics
- Quarkonium spectral functions with complex potential
- High Temperature QCD
- The anti-quark--quark potential from Bethe-Salpeter amplitudes on lattice
- Charmonium Potentials At Non-Zero Temperature
- Charmonium Potentials at Finite Temperature