English

A framework to mitigate patchy reionization contamination on the primordial gravitational wave signal

Cosmology and Nongalactic Astrophysics 2023-04-26 v2

Abstract

One of the major goals of future cosmic microwave background (CMB) BB-mode polarization experiments is the detection of primordial gravitational waves through an unbiased measurement of the tensor-to-scalar ratio rr. Robust detection of this signal will require mitigating all possible contamination to the BB-mode polarization from astrophysical origins. One such extragalactic contamination arises from the patchiness in the electron density during the reionization epoch. Along with the signature on CMB polarization, the patchy reionization can source secondary anisotropies on the CMB temperature through the kinetic Sunyaev-Zeldovich (kSZ) effect. In order to study the impact of this foreground for the upcoming CMB missions, we present a self-consistent framework to compute the CMB anisotropies based on a physically motivated model of reionization. We show that the value of rr can bias towards a higher value if the secondary contribution from reionization is neglected. However, combining small-scale kSZ signal, large-scale EE-mode polarization, and BB-mode polarization measurements, we can put constraints on the patchiness in electron density during reionization and can mitigate its impact on the value of rr. CMB missions such as CMB-S4 and PICO may experience a bias of >0.17σ>0.17\sigma which can go as high as 0.73σ\sim 0.73\sigma for extreme reionization models allowed by the Planck and SPT CMB measurements. As future experiments target to measure rr at 5σ5\sigma, this is likely to affect the measurement significance and hence possibly affect the claim of detection of rr, if not mitigated properly by using joint estimations of different reionization observables.

Keywords

Cite

@article{arxiv.2209.12672,
  title  = {A framework to mitigate patchy reionization contamination on the primordial gravitational wave signal},
  author = {Divesh Jain and Tirthankar Roy Choudhury and Suvodip Mukherjee and Sourabh Paul},
  journal= {arXiv preprint arXiv:2209.12672},
  year   = {2023}
}

Comments

Accepted for publication in Monthly Notices of the Royal Astronomical Society Main Journal