English

The Likelihood for LSS: Stochasticity of Bias Coefficients at All Orders

Cosmology and Nongalactic Astrophysics 2020-08-05 v3 Astrophysics of Galaxies

Abstract

In the EFT of biased tracers the noise field εg\varepsilon_g is not exactly uncorrelated with the nonlinear matter field δ\delta. Its correlation with δ\delta is effectively captured by adding stochasticities to each bias coefficient. We show that if these stochastic fields are Gaussian (the impact of their non-Gaussianity being subleading on quasi-linear scales anyway) it is possible to resum exactly their effect on the conditional likelihood P[δgδ]{\cal P}[\delta_g|\delta] to observe a galaxy field δg\delta_g given an underlying δ\delta. This resummation allows to take them into account in EFT-based approaches to Bayesian forward modeling. We stress that the resulting corrections to a purely Gaussian conditional likelihood with white-noise covariance are the most relevant on scales where the EFT is under control: they are more important than any non-Gaussianity of the noise εg\varepsilon_g.

Keywords

Cite

@article{arxiv.2004.00617,
  title  = {The Likelihood for LSS: Stochasticity of Bias Coefficients at All Orders},
  author = {Giovanni Cabass and Fabian Schmidt},
  journal= {arXiv preprint arXiv:2004.00617},
  year   = {2020}
}

Comments

15 pages. v2: very minor change in Eqs. (2.6), (2.8), (2.17), (2.19), (3.16), (3.18), (3.19) to show factorization in real space of the normalization of the likelihood, updated acknowledgements. v3: added section on renormalization, matches published version