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arXiv:2007.06886·v2·High Energy Physics — Phenomenology

Shear viscosity of classical Yang-Mills field

Hidefumi Matsuda🇯🇵 · Teiji Kunihiro🇯🇵 · Berndt Müller🇺🇸 · Akira Ohnishi🇯🇵 · Toru T. Takahashi🇯🇵

Abstract

We investigate the shear viscosity of the classical Yang-Mills (CYM) field on a lattice by using the Green-Kubo formula, where the shear viscosity is calculated from the time-correlation function of the energy-momentum tensor in equilibrium. Dependence of the shear viscosity on the coupling and temperature is represented by a scaling function as due to the scaling-invariant property of the CYM. The explicit functional form of is successfully determined from the calculated shear viscosity: It turns out that of the CYM field is proportional to at weak coupling, which is a weaker dependence on than that in the leading-order perturbation theory but consistent with that of the "anomalous viscosity" under the strong disordered field. The obtained shear viscosity is also found to be roughly consistent with that estimated through the analysis of the anisotropy of the pressure of the CYM dynamics in the expanding geometry with recourse to a hydrodynamic equation.

Comments: 10pages, 11figures

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