English

The maximum turnaround radius for axisymmetric cosmic structures

General Relativity and Quantum Cosmology 2021-03-09 v3 Cosmology and Nongalactic Astrophysics High Energy Physics - Theory

Abstract

Three simple idealised models are studied in order to develop some intuition about the leading order effect of non-sphericity on the maximum turnaround size RTA,maxR_{\rm TA,max} of large scale bound cosmic structures. Two of them describe intrinsically axisymmetric static mass distributions whereas the other is the Kerr-de Sitter metric where the axisymmetry is generated due to the rotation of the structure. In all the cases the fractional change δRTA,max(θ)/RTA,max(0)\delta R_{\rm TA,max}(\theta)/R^{(0)}_{\rm TA,max} of RTA,maxR_{\rm TA,max} of a given structure, compared to a spherical one with the same mass MM, depends on the polar angle θ\theta and is proportional to the product of the relevant eccentricity parameter, times the square of a small quantity. This quantity in the static examples is the ratio of two characteristic length scales, while in the spinning case it is the ratio vout/cv_{\rm out}/c of the azimuthal speed of the outmost members of the structure, over the speed of light. Furthermore, the angular average δRTA,max(θ)/RTA,max(0)\langle \delta R_{\rm TA,max}(\theta)/R^{(0)}_{\rm TA,max}\rangle is zero in the two static cases, while it is negative and proportional to O(vout2/c2){\cal O}(v^2_{\rm out}/c^2) for the Kerr-de Sitter. Thus, δRTA,max(θ)/RTA,max(0)\delta R_{\rm TA,max}(\theta)/R^{(0)}_{\rm TA,max} for an axisymmetric structure is very small for practically any value of the eccentricity parameter. We speculate about some possible further implications of our result on the maximum turn around radius of realistic cosmic structures.

Keywords

Cite

@article{arxiv.1911.06228,
  title  = {The maximum turnaround radius for axisymmetric cosmic structures},
  author = {Sourav Bhattacharya and Theodore N Tomaras},
  journal= {arXiv preprint arXiv:1911.06228},
  year   = {2021}
}

Comments

v3, 14pp; revised version; main results unchanged; accepted in Ann. Phys

R2 v1 2026-06-23T12:16:07.205Z