Cosmological constraints from the cross-correlation of DESI Luminous Red Galaxies with CMB lensing from Planck PR4 and ACT DR6
Noah Sailer, Joshua Kim, Simone Ferraro, Mathew S. Madhavacheril, Martin White, Irene Abril-Cabezas, Jessica Nicole Aguilar, Steven Ahlen, J. Richard Bond, David Brooks, Etienne Burtin, Erminia Calabrese, Shi-Fan Chen, Steve K. Choi, Todd Claybaugh, Kyle Dawson

TL;DR
This study uses cross-correlation of DESI LRGs with CMB lensing from Planck and ACT to measure the growth of large-scale structure, finding results consistent with ΛCDM and recent CMB analyses, with improved agreement over previous measurements.
Contribution
It introduces a hybrid effective field theory model for robustly deriving cosmological constraints from linear scales in LRG-CMB lensing cross-correlations.
Findings
Results are stable across modeling assumptions.
Measured S8 values are consistent with Planck and galaxy lensing.
The growth rate is slightly lower than ΛCDM predictions, with ~2σ significance.
Abstract
We infer the growth of large scale structure over the redshift range from the cross-correlation of spectroscopically calibrated Luminous Red Galaxies (LRGs) selected from the Dark Energy Spectroscopic Instrument (DESI) legacy imaging survey with CMB lensing maps reconstructed from the latest Planck and ACT data. We adopt a hybrid effective field theory (HEFT) model that robustly regulates the cosmological information obtainable from smaller scales, such that our cosmological constraints are reliably derived from the (predominantly) linear regime. We perform an extensive set of bandpower- and parameter-level systematics checks to ensure the robustness of our results and to characterize the uniformity of the LRG sample. We demonstrate that our results are stable to a wide range of modeling assumptions, finding excellent agreement with a linear theory analysis…
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