Treating divergence in quark matter by using energy projectors
arXiv:2107.00276 · doi:10.1103/PhysRevD.104.074001
Abstract
We calculate gluon self-energy using quark energy projectors in a general quark-gluon plasma. By separating the quark field into a positive- and a negative-energy mode, the quark loop constructed with the same mode is always convergent, and the divergence appears only in the mixed loop with different modes and is medium independent. After removing the divergence in vacuum, we obtain the one-loop gluon self-energy at finite temperature, chemical potential and quarks mass without approximation. With the method of quark loop resummation, we calculate non-perturbatively the gluon Debye mass and thermodynamic potential. In the limit of small gluon momentum in comparison with temperature, chemical potential and quark mass, our calculation comes back to the known HTL/HDL results in literature.
10 pages, 2 figures
References in corpus (8)
- Color superconductivity in dense quark matter
- The QCD transition temperature: results with physical masses in the continuum limit II.
- Pinch Technique: Theory and Applications
- Five-loop renormalisation of QCD in covariant gauges
- The NRQED lagrangian at order 1/M^4
- Chiral magnetic properties of QCD phase-diagram
- Probing the QCD phase diagram with fluctuations
- Some Aspects of the Exact Foldy-Wouthuysen Transformation for a Dirac Fermion