English

$B$-mode forecast of CMB-Bh$\overline{a}$rat

Cosmology and Nongalactic Astrophysics 2022-07-26 v2 Astrophysics of Galaxies

Abstract

Exploring Cosmic History and Origins (ECHO), popularly known as `CMB-Bha\overline{a}rat', is a space mission that has been proposed to the Indian Space Research Organisation (ISRO) for the scientific exploitation of the Cosmic Microwave Background (CMB) at the next level of precision and accuracy. The quest for the CMB polarization BB-mode signals, generated by inflationary gravitational waves in the very early universe, is one of the key scientific goals of its experimental design. This work studies the potential of the proposed ECHO instrumental configuration to detect the target tensor-to-scalar ratio r103r \sim 10^{-3} at 3σ3\sigma significance level, which covers the predictions of a large class of inflationary models. We investigate the performance of two different component separation pipelines, NILC and Commander, for the measurement of rr in presence of different physically motivated models of astrophysical foregrounds. For a simplistic foreground model (only polarized dust and synchrotron), both component separation pipelines can achieve the desired sensitivity of ECHO, i.e. σ(r=0)(0.40.7)×103\sigma (r =0) \sim (0.4 - 0.7)\times 10^{-3}. NILC performs better than Commander in terms of bias on recovered rr for complex spectral models (power-law and curved power-law) of the synchrotron emission and complex dust models (dust decorrelation). Assuming 84 % delensing, we can achieve an improvement of σ(r=0)\sigma (r = 0) by approximately 50 % as compared to the results obtained for the same configuration without any lensing correction.

Keywords

Cite

@article{arxiv.2110.12362,
  title  = {$B$-mode forecast of CMB-Bh$\overline{a}$rat},
  author = {Debabrata Adak and Aparajita Sen and Soumen Basak and Jacques Delabrouille and Tuhin Ghosh and Aditya Rotti and Ginés Martínez-Solaeche and Tarun Souradeep},
  journal= {arXiv preprint arXiv:2110.12362},
  year   = {2022}
}

Comments

17 pages, 12 figures, Published in MNRAS