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Exponential approach to the hydrodynamic attractor in Yang-Mills kinetic theory

Xiaojian Du, Michał P. Heller, Sören Schlichting, Viktor Svensson

2022Physical review. D/Physical review. D.19 citationsDOIOpen Access PDF

Abstract

We use principal component analysis to study the hydrodynamic attractor in Yang-Mills kinetic theory undergoing the Bjorken expansion with color glass condensate initial conditions. The late-time hydrodynamic attractor is characterized by a single principal component determining the overall energy scale. How it is reached is governed by the disappearance of single subleading principal component characterizing deviations of the pressure anisotropy, the screening mass and the scattering rate. We find that for wide range of couplings the approach to the hydrodynamic attractor at late times is well described by an exponential. Its decay rate dependence on the coupling turns out to translate into a simple dependence on the shear viscosity to entropy density ratio.

Topics & Concepts

AttractorPhysicsExponential functionKinetic energyAnisotropyExponential decayStatistical physicsThermodynamicsClassical mechanicsMathematical analysisMathematicsQuantum mechanicsHigh-Energy Particle Collisions ResearchCosmology and Gravitation TheoriesQuantum Chromodynamics and Particle Interactions
Exponential approach to the hydrodynamic attractor in Yang-Mills kinetic theory | Litcius