English

The two and three-loop matter bispectrum in perturbation theories

Cosmology and Nongalactic Astrophysics 2018-05-07 v2

Abstract

We evaluate for the first time the dark matter bispectrum of large-scale structure at two loops in the Standard Perturbation Theory and at three loops in the Renormalised Perturbation Theory (MPTbreeze formalism), removing in each case the leading divergences in the integrals in order to make them infrared-safe. We show that the Standard Perturbation Theory at two loops can be employed to model the matter bispectrum further into the quasi-nonlinear regime compared to one loop, up to kmax0.1h/Mpck_{\text{max}} \sim 0.1 \, h/{\text{Mpc}} at z=0z = 0, but without reaching a high level of accuracy. In the case of the MPTbreeze method, we show that its bispectra decay at smaller and smaller scales with increasing loop order, but with smaller improvements. At three loops, this model predicts the bispectrum accurately up to scales kmax0.17h/Mpck_{\text{max}} \sim 0.17 \, h/{\text{Mpc}} at z=0z = 0 and kmax0.24h/Mpck_{\text{max}} \sim 0.24 \, h/{\text{Mpc}} at z=1z = 1.

Keywords

Cite

@article{arxiv.1803.03184,
  title  = {The two and three-loop matter bispectrum in perturbation theories},
  author = {Andrei Lazanu and Michele Liguori},
  journal= {arXiv preprint arXiv:1803.03184},
  year   = {2018}
}

Comments

20 pages, 3 figures, added another set of simulations in the comparison section, matches JCAP published version

R2 v1 2026-06-23T00:46:47.699Z