$B$-sure I: Minkowski functionals as robustness test for tensor-to-scalar ratio detection from CMB observations
Abstract
The detection of primordial -mode polarisation of the Cosmic Microwave Background (CMB) is a major observational goal in modern Cosmology, offering a potential window into inflationary physics through the measurement of the tensor-to-scalar ratio . However, the presence of Galactic foregrounds poses significant challenges, possibly biasing the estimate. In this study we explore the viability of using Minkowski functionals (MFs) as a robustness test to validate a potential detection by identifying non-Gaussian features associated with foregrounds contamination. To do so, we simulate sky maps as observed by a LiteBIRD-like CMB experiment, with realistic instrumental and foregrounds modelling. The CMB -mode signal is recovered through blind component separation algorithms, and the obtained (biased) value of is used to generate Gaussian realisation of CMB signal. Their MFs are then compared with those computed on maps contaminated by foreground residual left by component separation, looking for a detection of non-Gaussianity. Our results demonstrate that, with the experimental configuration considered here, MFs can not be reliably adopted as a robustness test of an eventual detection, as we find that in the majority of the cases MFs are not able to raise significant warnings about the non-Gaussianity induced by the presence of foreground residuals. In the most realistic and refined scenario we adopted, the test is able to flag non-Gaussianity in of the simulations, meaning that there is no warning on the biased tensor-to-scalar ratio in of cases. These results suggest that more advanced statistics than MFs must be considered to look for non-Gaussian signatures of foregrounds, in order to be able to perform reliable null tests in future CMB missions.
Keywords
Cite
@article{arxiv.2510.18868,
title = {$B$-sure I: Minkowski functionals as robustness test for tensor-to-scalar ratio detection from CMB observations},
author = {Claudio Ranucci and Alessandro Carones and Léo Vacher and Nicoletta Krachmalnicoff and Carlo Baccigalupi},
journal= {arXiv preprint arXiv:2510.18868},
year = {2025}
}
Comments
28 pages, 14 figures, 3 tables. Prepared for submission to JCAP. Comments are welcome