Debye screening mass of hot Yang-Mills theory to three-loop order
arXiv:1509.08727 · doi:10.1007/JHEP11(2015)121
Abstract
Building upon our earlier work, we compute a Debye mass of finite-temperature Yang-Mills theory to three-loop order. As an application, we determine a contribution to the thermodynamic pressure of hot QCD.
19 pages, 2 figures
References in corpus (5)
- The leading non-perturbative coefficient in the weak-coupling expansion of hot QCD pressure
- Parton energy loss and momentum broadening at NLO in high temperature QCD plasmas
- On the smallest screening masses in hot QCD
- Plaquette expectation value and lattice free energy of three-dimensional SU(N) gauge theory
- Open problems in hot QCD
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