English

Perturbative and Nonperturbative Kolmogorov Turbulence in a Gluon Plasma

High Energy Physics - Phenomenology 2015-05-20 v4

Abstract

In numerical simulations of nonabelian plasma instabilities in the hard-loop approximation, a turbulent spectrum has been observed that is characterized by a phase-space density of particles n(p)pνn(p)\sim p^{-\nu} with exponent ν2\nu\simeq 2, which is larger than expected from relativistic 222\leftrightarrow 2 scatterings. Using the approach of Zakharov, L'vov and Falkovich, we analyse possible Kolmogorov coefficients for relativistic (m4)(m \ge 4)-particle processes, which give at most ν=5/3\nu=5/3 perturbatively for an energy cascade. We discuss nonperturbative scenarios which lead to larger values. As an extreme limit we find the result ν=5\nu=5 generically in an inherently nonperturbative effective field theory situation, which coincides with results obtained by Berges et al.\ in large-NN scalar field theory. If we instead assume that scaling behavior is determined by Schwinger-Dyson resummations such that the different scaling of bare and dressed vertices matters, we find that intermediate values are possible. We present one simple scenario which would single out ν=2\nu=2.

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Cite

@article{arxiv.1011.0393,
  title  = {Perturbative and Nonperturbative Kolmogorov Turbulence in a Gluon Plasma},
  author = {M. E. Carrington and A. Rebhan},
  journal= {arXiv preprint arXiv:1011.0393},
  year   = {2015}
}

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