Cross-correlation of gravitational lensing from DES Science Verification data with SPT and Planck lensing
D. Kirk, Y. Omori, A. Benoit-L\'evy, R. Cawthon, C. Chang, P. Larsen,, A. Amara, D. Bacon, T. M. Crawford, S. Dodelson, P. Fosalba, T. Giannantonio,, G. Holder, B. Jain, T. Kacprzak, O. Lahav, N. MacCrann, A. Nicola, A., Refregier, E. Sheldon, K. T. Story, M. A. Troxel

TL;DR
This study measures the cross-correlation between galaxy weak lensing from DES and CMB lensing from SPT and Planck, confirming consistency with LCDM predictions within current uncertainties.
Contribution
It presents the first combined analysis of DES galaxy lensing with SPT and Planck CMB lensing, demonstrating robustness against systematics and providing forecasts for future surveys.
Findings
Cross-correlation amplitudes are consistent with theoretical predictions.
Results are robust to shear measurement and redshift uncertainties.
Intrinsic alignments can increase the observed cross-correlation.
Abstract
We measure the cross-correlation between weak lensing of galaxy images and of the cosmic microwave background (CMB). The effects of gravitational lensing on different sources will be correlated if the lensing is caused by the same mass fluctuations. We use galaxy shape measurements from 139 deg of the Dark Energy Survey (DES) Science Verification data and overlapping CMB lensing from the South Pole Telescope (SPT) and Planck. The DES source galaxies have a median redshift of , while the CMB lensing kernel is broad and peaks at . The resulting cross-correlation is maximally sensitive to mass fluctuations at . Assuming the Planck 2015 best-fit cosmology, the amplitude of the DESSPT cross-power is found to be and that from DESPlanck to be , where corresponds to the theoretical…
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