English

Theory of Turbulence for $d \rightarrow \infty$: Four-Loop Approximation of the Renormalization Group

Statistical Mechanics 2024-06-24 v1

Abstract

Within the framework of the renormalization group approach in the stochastic model of fully developed turbulence, the β\beta-function has been calculated in the fourth order of perturbation theory for high-dimensional spaces dd \rightarrow \infty. The position of the fixed point of the renormalization group in the fourth order of the ε\varepsilon-expansion has been determined, and the index ω\omega, which defines the infrared stability of this point, has been calculated. We demonstrate the possibility of significantly reducing the number of Feynman diagrams through mutual cancellation. The results obtained allow us to find the four terms of the ε\varepsilon-expansion of the index ω\omega: ω=2ε+23ε2+109ε3+5627ε4. \omega = 2\,\varepsilon + \frac{2}{3}\,\varepsilon^2 + \frac{10}{9}\,\varepsilon^3 + \frac{56}{27}\,\varepsilon^4.

Keywords

Cite

@article{arxiv.2406.14575,
  title  = {Theory of Turbulence for $d \rightarrow \infty$: Four-Loop Approximation of the Renormalization Group},
  author = {Loran Ts. Adzhemyan and Yury Kirienko},
  journal= {arXiv preprint arXiv:2406.14575},
  year   = {2024}
}

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13 pages