English

Frequentist Cosmological Constraints from Full-Shape Clustering Measurements in DESI DR1

Cosmology and Nongalactic Astrophysics 2025-08-19 v1

Abstract

We perform a frequentist analysis using the standard profile likelihood method for clustering measurements from Data Release 1 of the Dark Energy Spectroscopic Instrument (DESI). While Bayesian inferences for Effective Field Theory models of galaxy clustering can be highly sensitive to the choice of priors for extended cosmological models, frequentist inferences are not susceptible to such effects. We compare Bayesian and frequentist constraints for the parameter set {σ8,H0,Ωm,w0,wa}\{\sigma_8, H_0, \Omega_{\rm{m}}, w_0, w_a\} when fitting to the full-shape of the power spectrum multipoles, the post-reconstruction Baryon Acoustic Oscillation (BAO) measurements, as well as external datasets from the CMB and type Ia supernovae measurements. Bayesian prior effects are very significant for the w0waw_0w_aCDM model; while the 1σ1 \sigma frequentist confidence intervals encompass the maximum a posteriori (MAP), the Bayesian credible intervals almost always exclude the maximum likelihood estimate (MLE) and the MAP - indicating strong prior volume projection effects - unless supernovae data are included. We observe limited prior effects for the Λ\LambdaCDM model, due to the reduced number of parameters. When DESI full-shape and BAO data are jointly fit, we obtain the following 1σ1\sigma frequentist confidence intervals for Λ\LambdaCDM (w0waw_0w_aCDM): σ8=0.8670.041+0.048, H0=68.910.79+0.80 km s1Mpc1, Ωm=0.3038±0.0110\sigma_8 = 0.867^{+0.048}_{-0.041} , \ H_0 = 68.91^{+0.80}_{-0.79} \ \rm{km \ s^{-1}Mpc^{-1}} , \ \Omega_{\rm{m}} = 0.3038\pm0.0110 (σ8=0.7930.048+0.069, H0=64.92.8+4.8 km s1Mpc1, Ωm=0.3690.059+0.029\sigma_8 = 0.793^{+0.069}_{-0.048} , \ H_0 = 64.9^{+4.8}_{-2.8} \ \rm{km \ s^{-1}Mpc^{-1}} , \ \Omega_{\rm{m}} = 0.369^{+0.029}_{-0.059} , w0=0.240.64+0.17w_0 = -0.24^{+0.17}_{-0.64} , wa=2.5+1.9w_a = -2.5^{+1.9}_{}), corresponding to 0.7σ\sigma, 0.3σ\sigma, 0.7σ\sigma (1.9σ\sigma, 3.4σ\sigma, 5.6σ\sigma, 5.5σ\sigma, 5.6σ\sigma) shifts between the MLE relative to the Bayesian posterior mean for Λ\LambdaCDM (w0waw_0w_aCDM) respectively.

Keywords

Cite

@article{arxiv.2508.11811,
  title  = {Frequentist Cosmological Constraints from Full-Shape Clustering Measurements in DESI DR1},
  author = {James Morawetz and Hanyu Zhang and Marco Bonici and Will Percival and Andrea Crespi and Jessica Nicole Aguilar and Steven Ahlen and Davide Bianchi and David Brooks and Francisco Javier Castander and Todd Claybaugh and Shaun Cole and Andrei Cuceu and Axel de la Macorra and Arnaud de Mattia and Biprateep Dey and Peter Doel and Simone Ferraro and Andreu Font-Ribera and Jaime E. Forero-Romero and Enrique Gaztañaga and Satya Gontcho A Gontcho and Gaston Gutierrez and ChangHoon Hahn and Klaus Honscheid and Dragan Huterer and Mustapha Ishak and Dick Joyce and Robert Kehoe and David Kirkby and Theodore Kisner and Ofer Lahav and Andrew Lambert and Martin Landriau and Laurent Le Guillou and Marc Manera and Ramon Miquel and Eva-Maria Mueller and Seshadri Nadathur and Jeffrey A. Newman and Gustavo Niz and Nathalie Palanque-Delabrouille and Francisco Prada and Ignasi Pérez-Ràfols and Graziano Rossi and Lado Samushia and Eusebio Sanchez and David Schlegel and Michael Schubnell and Joseph Harry Silber and David Sprayberry and Gregory Tarlé and Benjamin Alan Weaver and Pauline Zarrouk and Rongpu Zhou and Hu Zou},
  journal= {arXiv preprint arXiv:2508.11811},
  year   = {2025}
}

Comments

23 pages, 4 figures, comments welcome