Cross-correlating the EMU Pilot Survey 1 with CMB lensing: Constraints on cosmology and galaxy bias with harmonic-space power spectra
K. Tanidis, J. Asorey, C. S. Saraf, C. L. Hale, B. Bahr-Kalus, D. Parkinson, S. Camera, R. P. Norris, A. M. Hopkins, M. Bilicki, and N. Gupta

TL;DR
This study measures the cross-correlation between EMU Pilot Survey 1 galaxy data and CMB lensing, constraining cosmological parameters and galaxy bias, demonstrating the potential of radio surveys for cosmology.
Contribution
It presents the first detection of EMU PS1 and CMB lensing cross-correlation and models galaxy bias and cosmological parameters using harmonic-space power spectra.
Findings
Detected cross-correlation at 5.5σ significance.
Measured galaxy bias values consistent with previous studies.
Estimated σ8 values compatible with Planck and weak lensing results.
Abstract
We measured the harmonic-space power spectrum of galaxy clustering auto-correlation from the Evolutionary Map of the Universe Pilot Survey 1 data (EMU PS1) and its cross-correlation with the lensing convergence map of cosmic microwave background (CMB) from Planck Public Release 4 at the linear scale range from to 500. We applied two flux density cuts at and mJy on the radio galaxies observed at 944MHz and considered two source detection algorithms. We found the auto-correlation measurements from the two algorithms at the 0.18mJy cut to deviate for due to the different criteria assumed on the source detection and decided to ignore data above this scale. We report a cross-correlation detection of EMU PS1 with CMB lensing at 5.5, irrespective of flux density cut. In our theoretical modelling we considered two redshift distribution…
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Taxonomy
TopicsAstronomy and Astrophysical Research · Economic Growth and Productivity
