English

The squeezed matter bispectrum covariance with responses

Cosmology and Nongalactic Astrophysics 2019-06-18 v2

Abstract

We present a calculation of the angle-averaged squeezed matter bispectrum covariance Cov(Bm(k1,k1,s1),Bm(k2,k2,s2)){\rm Cov}\left(B_{m}(k_1, k_1', s_1), B_{m}(k_2, k_2', s_2)\right), siki,kis_i \ll k_i,k_i' (i=1,2i=1,2), that uses matter power spectrum responses to describe the coupling of large- to short-scale modes in the nonlinear regime. The covariance is given by a certain configuration of the 6-point function, which we show is dominated by response-type mode-coupling terms in the squeezed bispectrum limit. The terms that are not captured by responses are small, effectively rendering our calculation complete and predictive for linear s1,s2s_1,s_2 values and any nonlinear values of k1,k1,k2,k2k_1,k_1',k_2,k_2'. Our numerical results show that the squeezed bispectrum super-sample covariance is only a negligible contribution. We also compute the power spectrum-bispectrum cross-covariance using responses. Our derivation for the squeezed matter bispectrum is the starting point to calculate analytical covariances for more realistic galaxy clustering and weak-lensing applications. It can also be used in cross-checks of numerical ensemble estimates of the general bispectrum covariance, given that it is effectively noise-free and complete in the squeezed limit.

Cite

@article{arxiv.1901.01243,
  title  = {The squeezed matter bispectrum covariance with responses},
  author = {Alexandre Barreira},
  journal= {arXiv preprint arXiv:1901.01243},
  year   = {2019}
}

Comments

29 pages + appendices; 3 figures and 1 table. The busy reader can focus on the summary in the Introduction, Table 1 and Section 6 with results. Comments welcomed. v2: minor corrections to the text; version published on JCAP

R2 v1 2026-06-23T07:03:26.448Z