English

First Post-Minkowskian approach to turbulent gravity

General Relativity and Quantum Cosmology 2022-11-16 v2

Abstract

We compute the metric fluctuations induced by a turbulent energy-matter tensor within the first order Post-Minkowskian approximation. It is found that the turbulent energy cascade can in principle interfere with the process of black hole formation, leading to a potentially strong coupling between these two highly nonlinear phenomena. It is further found that a power-law turbulent energy spectrum E(k)knE(k) \sim k^{-n} generates metric fluctuations scaling like xn2x^{n-2}, where xx is a four-dimensional distance from an arbitrary origin in spacetime. This highlights the onset of metric singularities whenever n<2n <2, meaning that 2d2d fluid turbulence (n=3n=3) yields smooth %(differentiable) metric fluctuations, scaling like xx, while 3d3d turbulence (n=5/3n=5/3) yields a weakly singular metric x1/3x^{-1/3}and purely random fluctuations, n=1n=1, generate a stronger 1/x1/x singularity. Finally, the effect of metric fluctuations on the geodesic motion of test particles is also discussed as a potential technique to extract information on the spectral characteristics of fluctuating spacetime.

Keywords

Cite

@article{arxiv.2208.03572,
  title  = {First Post-Minkowskian approach to turbulent gravity},
  author = {Donato Bini and Stuart Kauffman and Sauro Succi and Pablo G. Tello},
  journal= {arXiv preprint arXiv:2208.03572},
  year   = {2022}
}

Comments

11 pages; 5 figures

R2 v1 2026-06-25T01:32:23.523Z