ForestFlow: predicting the Lyman-$\alpha$ forest clustering from linear to nonlinear scales
Abstract
On large scales, the Lyman- forest provides insights into the expansion history of the Universe, while on small scales, it imposes strict constraints on the growth history, the nature of dark matter, and the sum of neutrino masses. This work introduces ForestFlow, a novel framework that bridges the gap between large- and small-scale analyses, which have traditionally relied on distinct modeling approaches. Using conditional normalizing flows, ForestFlow predicts the two Lyman- linear biases ( and ) and six parameters describing small-scale deviations of the three-dimensional flux power spectrum () from linear theory as a function of cosmology and intergalactic medium physics. These are then combined with a Boltzmann solver to make consistent predictions, from arbitrarily large scales down to the nonlinear regime, for and any other statistics derived from it. Trained on a suite of 30 fixed-and-paired cosmological hydrodynamical simulations spanning redshifts from to 4.5, ForestFlow achieves 3 and 1.5\% precision in describing and the one-dimensional flux power spectrum () from linear scales to and , respectively. Thanks to its conditional parameterization, ForestFlow shows similar performance for ionization histories and two CDM model extensions massive neutrinos and curvature even though none of these are included in the training set. This framework will enable full-scale cosmological analyses of Lyman- forest measurements from the DESI survey.
Cite
@article{arxiv.2409.05682,
title = {ForestFlow: predicting the Lyman-$\alpha$ forest clustering from linear to nonlinear scales},
author = {J. Chaves-Montero and L. Cabayol-Garcia and M. Lokken and A. Font-Ribera and J. Aguilar and S. Ahlen and D. Bianchi and D. Brooks and T. Claybaugh and S. Cole and A. de la Macorra and S. Ferraro and J. E. Forero-Romero and E. Gaztañaga and S. Gontcho A Gontcho and G. Gutierrez and K. Honscheid and R. Kehoe and D. Kirkby and A. Kremin and A. Lambert and M. Landriau and M. Manera and P. Martini and R. Miquel and A. Muñoz-Gutiérrez and G. Niz and I. Pérez-Ràfols and G. Rossi and E. Sanchez and M. Schubnell and D. Sprayberry and G. Tarlé and B. A. Weaver},
journal= {arXiv preprint arXiv:2409.05682},
year = {2025}
}
Comments
18 pages, 12 figures. Accepted in A&A