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◆ Journal of Cosmology and Astroparticle Physics2026-04-01· Cosmic microwave background

Inference of the linear matter power spectrum at <i>z</i> = 0 using DESI DR1 Full-Shape data

R. Cereskaite, Eva-Maria Mueller, Cullan Howlett, T. M. Davis, José Aguilar, S. P. Ahlen, D. Bianchi, David J. Brooks, F. J. Castander, T. Claybaugh, Andrei Cuceu, Axel de la Macorra, Simone Ferraro, Andreu Font-Ribera, J. E. Forero-Romero, E. Gaztañaga, C. P. Gutiérrez, ChangHoon Hahn, K. Honscheid, Dragan Huterer, Mustapha Ishak, Robert Joyce, S. Juneau, D. Kirkby, A. Kremin, O Lahav, Adam Lambert, M Landriau, L. Le Guillou, Marc Manera, Aaron Meisner, R Miquel, John Moustakas, S Nadathur, Jeffrey A. Newman, N. Palanque‐Delabrouille, Will J. Percival, Francisco Prada, Ignasi Pérez-Ràfols, Giacomo Rossi, E. Sánchez, David J. Schlegel, M. Schubnell, Hee‐Jong Seo, J. Silber, D. Sprayberry, G. Tarlé, Benjamin Alan Weaver, Pauline Zarrouk, Rongpu Zhou, H. Zou

原始摘要(原文)
Abstract Measurements of galaxy distributions at large cosmic distances capture clustering from the past. In this study, we use a cosmological model to translate these observations into the present-day galaxy distribution. Specifically, we reconstruct the 3D linear matter power spectrum at redshift z = 0 using Dark Energy Spectroscopic Instrument (DESI) Year 1 (DR1) galaxy clustering data and Cosmic Microwave Background (CMB) observations, assuming the ΛCDM model, and compare it to the result assuming the w 0 w a CDM model. Building on previous state-of-the-art methods, we apply Effective Field Theory (EFT) modelling of the galaxy power spectrum to account for small-scale effects in the 2-point statistics of galaxy data. Implementation of the EFT approach improves the modelling of the galaxy power spectrum, providing a more robust consistency test of the assumed cosmological model. By casting both CMB and galaxy clustering observations, spanning distinct redshift regimes, into k -space, we can identify discrepancies between the datasets of different redshifts, which would indicate potential inaccuracies in the assumed expansion history. While previous studies have shown consistency with ΛCDM, this work extends the analysis with higher-quality data to further test the expansion histories of both ΛCDM and w 0 w a CDM. Our findings show that both ΛCDM and w 0 w a CDM provide consistent fits to the linear matter power spectrum recovered from DESI DR1 data.
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Inference of the linear matter power spectrum at <i>z</i> = 0 using DESI DR1 Full-Shape data — 科研速览 Science Skim