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  • Featured in Physics

Modeling the Cosmological Lyman-α Forest at the Field Level

Roger de Belsunce1,2,*, Mikhail M. Ivanov3,4,†, James M. Sullivan3,‡, Kazuyuki Akitsu5, and Shi-Fan Chen6

  • *Contact author: belsunce@mit.edu
  • †Contact author: ivanov99@mit.edu
  • ‡Contact author: jms3@mit.edu

Phys. Rev. Lett. 136, 101001 – Published 10 March, 2026

DOI: https://doi.org/10.1103/8g9h-68ms

Abstract

The distribution of absorption lines in the spectra of distant quasars, called the Lyman-α (Ly-α) forest, is a unique probe of cosmology and the intergalactic medium at high redshifts and small scales. The statistical power of ongoing redshift surveys demands precise theoretical tools to model the Ly-α forest. We address this challenge by developing an analytic, perturbative forward model to predict the Ly-α forest at the field level for a given set of cosmological initial conditions. Our model shows a remarkable performance when compared with the Sherwood hydrodynamic simulations: it reproduces the Ly-α forest flux power spectrum, its cross-correlation with dark matter halos, and the one-point probability distribution function of both fields at the percent level down to scales of a few Mpc. Our work provides crucial tools that bridge analytic modeling on large scales with simulations on small scales, enabling field-level inference from Ly-α forest data and simulation-based priors for cosmological analyses. This is especially timely for realizing the full scientific potential of the Ly-α forest measurements by the dark energy spectroscopic instrument.

Physics Subject Headings (PhySH)

synopsis

Probing the Cosmic Web

Published 10 March, 2026

A new mathematical framework based on perturbation theory could yield new insights into cosmic structure and fundamental physics.

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