Establishing the origin of CMB B-mode polarization
arXiv:1610.09365 · doi:10.1103/PhysRevD.96.063508
Abstract
Primordial gravitational waves leave a characteristic imprint on the cosmic microwave background (CMB) in the form of -mode polarization. Photons are also deflected by large scale gravitational waves which intervene between the source screen and our telescopes, resulting in curl-type gravitational lensing. Gravitational waves present at the epoch of reionization contribute to both effects, thereby leading to a non-vanishing cross-correlation between -mode polarization and curl lensing of the CMB. Observing such a cross correlation would be very strong evidence that an observation of -mode polarization was due to the presence of large scale gravitational waves, as opposed to astrophysical foregrounds or experimental systematic effects. We study the cross-correlation across a wide range of source redshifts and show that a post-SKA experiment aimed to map out the 21-cm sky between could rule out non-zero cross-correlation at high significance for .
7 pages, 4 figures. Comments welcome
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