The Likelihood for LSS: Stochasticity of Bias Coefficients at All Orders
Abstract
In the EFT of biased tracers the noise field is not exactly uncorrelated with the nonlinear matter field . Its correlation with 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 to observe a galaxy field given an underlying . 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 .
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