Large-scale acoustic peak shift in the Planck CMB data
Abstract
Cosmic microwave background (CMB) temperature anisotropies encode the history of the universe, which manifest itself in the angular power spectrum. We test the angular power spectra of small patches from the ESA data. Known variations in the power spectra from small patches reveal informative details such as the gravitational lensing and the Doppler boosting effect. We compute the relative shifts of power spectra via comparing patches selected randomly from the CMB. We visualize the relative shifts on a full-sky HEALPix grid (a feature map) and analyze the statistical properties on the full-sky map. We find the regions contain the Cold Spot and the Draco supervoid have large relative shifts to large scales. We also find a dipole on the generated feature map comparing with simulations. We discuss possible ways to resolve this dipole on the feature map, including foregrounds, solar dipole systematics, and the uncertainty in our method.
Cite
@article{arxiv.1812.08980,
title = {Large-scale acoustic peak shift in the Planck CMB data},
author = {Ming-Feng Ho and Lung-Yih Chiang},
journal= {arXiv preprint arXiv:1812.08980},
year = {2021}
}
Comments
12 pages, 8 figures. Part of Master's thesis (Caveats might exist because it's not prepared for a journal publication. It is a report on the usage of the method, rather than new results). Corrections on the discussion and abstract section