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Spectral function of fermions in a highly occupied non-Abelian plasma

Kirill Boguslavski, T. Lappi, Mark Mace, Sören Schlichting

2022Physics Letters B13 citationsDOIOpen Access PDF

Abstract

We develop a method to obtain fermion spectral functions non-perturbatively in a non-Abelian gauge theory with high occupation numbers of gauge fields. After recovering the free field case, we extract the spectral function of fermions in a highly occupied non-Abelian plasma close to its non-thermal fixed point, i.e., in a self-similar regime of the non-equilibrium dynamics. We find good agreement with hard loop perturbation theory for medium-induced masses, dispersion relations and quasiparticle residues. We also extract the full momentum dependence of the damping rate of the collective excitations.

Topics & Concepts

QuasiparticlePhysicsFermionAbelian groupSpectral functionPerturbation theory (quantum mechanics)Gauge theoryQuantum electrodynamicsPlasmaDispersion relationMathematical physicsQuantum mechanicsCondensed matter physicsMathematicsCombinatoricsSuperconductivityHigh-Energy Particle Collisions ResearchQuantum, superfluid, helium dynamicsCold Atom Physics and Bose-Einstein Condensates
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