TY - JOUR
T1 - Cosmological constraints from a joint DESI DR1 Full-Shape and DR2 BAO
AU - DESI Collaboration
AU - Forero-Sánchez, D.
AU - Gil-Marín, H.
AU - Verde, L.
AU - Ding, Z.
AU - Ross, A. J.
AU - Carnero Rosell, A.
AU - Aguilar, J.
AU - Ahlen, S.
AU - Bailey, S.
AU - Bianchi, D.
AU - Blake, C.
AU - Brodzeller, A.
AU - Brooks, D.
AU - Canning, R.
AU - Castander, F. J.
AU - Claybaugh, T.
AU - Cole, S.
AU - Cuceu, A.
AU - de la Macorra, A.
AU - Dey, Arjun
AU - Doel, P.
AU - Ferraro, S.
AU - Font-Ribera, A.
AU - Forero-Romero, J. E.
AU - Gaztañaga, E.
AU - Gutierrez, G.
AU - Guy, J.
AU - Hahn, C.
AU - Herrera-Alcantar, H. K.
AU - Honscheid, K.
AU - Huterer, D.
AU - Ishak, M.
AU - Joyce, R.
AU - Juneau, S.
AU - Kehoe, R.
AU - Kirkby, D.
AU - Kisner, T.
AU - Kneib, J.
AU - Kremin, A.
AU - Lahav, O.
AU - Lamman, C.
AU - Landriau, M.
AU - Le Guillou, L.
AU - Manera, M.
AU - Meisner, A.
AU - Miquel, R.
AU - Moustakas, J.
AU - Niz, G.
AU - Palanque-Delabrouille, N.
AU - Percival, W. J.
N1 - Publisher Copyright:
© 2026 The Author(s). Published by IOP Publishing Ltd on behalf of Sissa Medialab. Original content from this work may be used under the terms of the http://creativecommons.org/licenses/by/4.0. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.
PY - 2026/6/17
Y1 - 2026/6/17
N2 - We present a cosmological analysis combining full-shape (FS) clustering measurements from the Dark Energy Spectroscopic Instrument (DESI) DR1 with baryon acoustic oscillation (BAO) measurements from DESI DR2. To achieve a robust combination that accounts for the correlation between the two data releases, we employ the ShapeFit compression method and estimate the joint covariance using EZmocks. This compressed approach inherently mitigates the prior volume effects that have previously dominated Bayesian constraints from DESI data with minimal external priors. Consequently, we obtain — for the first time within a Bayesian framework — reliable DESI-only constraints on extensions to ΛCDM using only a Big Bang Nucleosynthesis prior on the baryon density and a wide prior on the spectral index. In flat ΛCDM, we find Ω m = 0.3035 ± 0.0085, h = 0.6876 ± 0.0059, and σ 8 = 0.822 ± 0.034. For the w 0 wa CDM dynamical dark energy model, we measure w 0 = -0.49 ± 0.25 and wa = -1.52 ± 0.77, improving constraints by ∼ 30% relative to the analogous DR1 measurement and reducing the discrepancy with ΛCDM to 1.4σ when compared to BAO only analyses. We also report competitive limits on the sum of neutrino masses and spatial curvature. This work demonstrates that the ShapeFit compression provides a prior-robust and computationally efficient pathway to constrain beyond-ΛCDM physics with large-scale structure.
AB - We present a cosmological analysis combining full-shape (FS) clustering measurements from the Dark Energy Spectroscopic Instrument (DESI) DR1 with baryon acoustic oscillation (BAO) measurements from DESI DR2. To achieve a robust combination that accounts for the correlation between the two data releases, we employ the ShapeFit compression method and estimate the joint covariance using EZmocks. This compressed approach inherently mitigates the prior volume effects that have previously dominated Bayesian constraints from DESI data with minimal external priors. Consequently, we obtain — for the first time within a Bayesian framework — reliable DESI-only constraints on extensions to ΛCDM using only a Big Bang Nucleosynthesis prior on the baryon density and a wide prior on the spectral index. In flat ΛCDM, we find Ω m = 0.3035 ± 0.0085, h = 0.6876 ± 0.0059, and σ 8 = 0.822 ± 0.034. For the w 0 wa CDM dynamical dark energy model, we measure w 0 = -0.49 ± 0.25 and wa = -1.52 ± 0.77, improving constraints by ∼ 30% relative to the analogous DR1 measurement and reducing the discrepancy with ΛCDM to 1.4σ when compared to BAO only analyses. We also report competitive limits on the sum of neutrino masses and spatial curvature. This work demonstrates that the ShapeFit compression provides a prior-robust and computationally efficient pathway to constrain beyond-ΛCDM physics with large-scale structure.
KW - baryon acoustic oscillations
KW - cosmological parameters from LSS
KW - dark energy experiments
KW - neutrino masses from cosmology
UR - https://www.scopus.com/pages/publications/105042168722
U2 - 10.1088/1475-7516/2026/06/043
DO - 10.1088/1475-7516/2026/06/043
M3 - Article
AN - SCOPUS:105042168722
SN - 1475-7516
VL - 2026
JO - Journal of Cosmology and Astroparticle Physics
JF - Journal of Cosmology and Astroparticle Physics
IS - 6
M1 - 043
ER -