TY - JOUR
T1 - Constraining primordial non-Gaussianity from DESI DR1 quasars and Planck PR4 CMB Lensing
AU - DESI Collaboration
AU - Chiarenza, Sofia
AU - Krolewski, Alex
AU - Bonici, Marco
AU - Chaussidon, Edmond
AU - de Belsunce, Roger
AU - Percival, Will
AU - Aguilar, Jessica Nicole
AU - Ahlen, Steven
AU - Lizancos, Anton Baleato
AU - Bianchi, Davide
AU - Brooks, David
AU - Claybaugh, Todd
AU - Cuceu, Andrei
AU - Dawson, Kyle
AU - Macorra, Axel de la
AU - Doel, Peter
AU - Ferraro, Simone
AU - Font-Ribera, Andreu
AU - Forero-Romero, Jaime E.
AU - Gaztañaga, Enrique
AU - Gontcho, Satya Gontcho A
AU - Gutierrez, Gaston
AU - Herrera-Alcantar, Hiram K.
AU - Honscheid, Klaus
AU - Huterer, Dragan
AU - Ishak, Mustapha
AU - Joyce, Dick
AU - Kirkby, David
AU - Kremin, Anthony
AU - Lahav, Ofer
AU - Lamman, Claire
AU - Landriau, Martin
AU - Guillou, Laurent Le
AU - Levi, Michael
AU - Manera, Marc
AU - Martini, Paul
AU - Meisner, Aaron
AU - Miquel, Ramon
AU - Nadathur, Seshadri
AU - Newman, Jeffrey A.
AU - Niz, Gustavo
AU - Palanque-Delabrouille, Nathalie
AU - Poppett, Claire
AU - Prada, Francisco
AU - Pérez-Ràfols, Ignasi
AU - Rossi, Graziano
AU - Sanchez, Eusebio
AU - Schlegel, David
AU - Schubnell, Michael
AU - Seo, Hee-Jong
N1 - 42 pages, 17 figures, 11 tables. Comments are welcome
PY - 2026/5/28
Y1 - 2026/5/28
N2 - We present the first measurement of local-type primordial non-Gaussianity from the cross-correlation between $1.2$ million spectroscopically confirmed quasars from the first data release (DR1) of the Dark Energy Spectroscopic Instrument (DESI) and the Planck PR4 CMB lensing reconstructions. The analysis is performed in three tomographic redshift bins covering $0.8 < z < 3.5$, covering a sky fraction of $\sim 20\%$. We adopt a catalog-based pseudo-$C_\ell$ estimator and apply linear imaging weights validated on noiseless mocks. Compared to previous analyses using photometric quasar samples, our results benefit from the high purity of the DESI spectroscopic sample, the reduced noise of PR4 lensing, and the absence of excess large-scale power in the spectroscopic quasar auto-correlation. Fitting simultaneously for the non-Gaussianity parameter $f_{\mathrm{NL}}$ and the linear bias amplitude in each redshift bin, we obtain $f_{\mathrm{NL}} = 2^{+28}_{-34}$ for a response parameter $p=1.6$, and $f_{\mathrm{NL}} = 6^{+20}_{-24}$ for $p=1.0$. These results improve the constraints on $f_{\mathrm{NL}}$ by $\sim 35\%$ compared to the previous analysis based on the Legacy Imaging Survey DR9. Our results demonstrate the statistical power of DESI quasars for probing inflationary physics, and highlight the promise of future DESI data releases.
AB - We present the first measurement of local-type primordial non-Gaussianity from the cross-correlation between $1.2$ million spectroscopically confirmed quasars from the first data release (DR1) of the Dark Energy Spectroscopic Instrument (DESI) and the Planck PR4 CMB lensing reconstructions. The analysis is performed in three tomographic redshift bins covering $0.8 < z < 3.5$, covering a sky fraction of $\sim 20\%$. We adopt a catalog-based pseudo-$C_\ell$ estimator and apply linear imaging weights validated on noiseless mocks. Compared to previous analyses using photometric quasar samples, our results benefit from the high purity of the DESI spectroscopic sample, the reduced noise of PR4 lensing, and the absence of excess large-scale power in the spectroscopic quasar auto-correlation. Fitting simultaneously for the non-Gaussianity parameter $f_{\mathrm{NL}}$ and the linear bias amplitude in each redshift bin, we obtain $f_{\mathrm{NL}} = 2^{+28}_{-34}$ for a response parameter $p=1.6$, and $f_{\mathrm{NL}} = 6^{+20}_{-24}$ for $p=1.0$. These results improve the constraints on $f_{\mathrm{NL}}$ by $\sim 35\%$ compared to the previous analysis based on the Legacy Imaging Survey DR9. Our results demonstrate the statistical power of DESI quasars for probing inflationary physics, and highlight the promise of future DESI data releases.
KW - astro-ph.CO
KW - cosmological parameters from LSS
KW - inflation
KW - physics of the early universe
KW - cosmological parameters from CMBR
U2 - 10.1088/1475-7516/2026/05/098
DO - 10.1088/1475-7516/2026/05/098
M3 - Article
SN - 1475-7516
VL - 2026
JO - Journal of Cosmology and Astroparticle Physics
JF - Journal of Cosmology and Astroparticle Physics
IS - 05
M1 - 098
ER -