We present a new measurement of structure growth at z≃0.08 obtained by correlating the cosmic microwave background (CMB) lensing potential map from the \textit{Planck} satellite with the angular distribution of the 2MASS Photometric Redshift galaxies. After testing for, and finding no evidence for systematic effects, we calculate the angular auto- and cross-power spectra. We combine these spectra to estimate the amplitude of structure growth using the bias-independent DG estimator introduced by Giannantonio et al. 2016. We find that the relative amplitude of DG with respect to the predictions based on \textit{Planck} cosmology is AD(z=0.08)=1.00±0.21, fully consistent with the expectations for the standard cosmological model. Considering statistical errors only, we forecast that a joint analysis between an LSST-like photometric galaxy sample and lensing maps from upcoming ground-based CMB surveys like the Simons Observatory and CMB-S4 can yield sub-percent constraints on the growth history and differentiate between different models of cosmic acceleration.
@article{arxiv.1801.03736,
title = {Constraining gravity at large scales with the 2MASS Photometric Redshift catalogue and Planck lensing},
author = {Federico Bianchini and Christian L. Reichardt},
journal= {arXiv preprint arXiv:1801.03736},
year = {2018}
}
Comments
14 pages, 8 figures, 1 table, updated to match published version on ApJ