COSMOGLOBE DR1 results

Author:

Eskilt J. R.,Watts D. J.,Aurlien R.,Basyrov A.,Bersanelli M.,Brilenkov M.,Colombo L. P. L.,Eriksen H. K.,Fornazier K. S. F.,Franceschet C.,Fuskeland U.,Galloway M.,Gjerløw E.,Hensley B.,Hergt L. T.,Herman D.,Ihle H. T.,Lee K.,Lunde J. G. S.,Nerval S. K.,Paradiso S.,Patel S. K.,Rahman F.,Regnier M.,San M.,Sanyal S.,Stutzer N.-O.,Thommesen H.,Verma A.,Wehus I. K.,Zhou Y.

Abstract

Cosmic birefringence is a parity-violating effect that might have rotated the plane of the linearly polarized light of the cosmic microwave background (CMB) by an angle β since its emission. This angle has recently been measured to be nonzero at a statistical significance of 3.6σ in the official Planck PR4 and 9-year WMAP data. In this work, we constrain β using the reprocessed BEYONDPLANCK LFI and COSMOGLOBE DR1 WMAP polarization maps. These novel maps have both lower systematic residuals and a more complete error description than the corresponding official products. Foreground EB correlations could bias measurements of β, and while thermal dust EB emission has been argued to be statistically nonzero, no evidence for synchrotron EB power has been reported. Unlike the dust-dominated Planck HFI maps, the majority of the LFI and WMAP polarization maps are instead dominated by synchrotron emission. Simultaneously constraining β and the polarization miscalibration angle, α, of each channel, we find a best-fit value of β = 0.35° ±0.70° with LFI and WMAP data only. When including the Planck HFI PR4 maps, but fitting β separately for dust-dominated, β> 70 GHz, and synchrotron-dominated channels, β≤70 GHz, we find β≤70 GHz = 0.53° ±0.28°. This differs from zero with a statistical significance of 1.9σ, and the main contribution to this value comes from the LFI 70 GHz channel. While the statistical significances of these results are low on their own, the measurement derived from the LFI and WMAP synchrotron-dominated maps agrees with the previously reported HFI-dominated constraints, despite the very different astrophysical and instrumental systematics involved in all these experiments.

Publisher

EDP Sciences

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Quintessential interpretation of the evolving dark energy in light of DESI observations;Physical Review D;2024-06-24

2. Axionic defects in the CMB: birefringence and gravitational waves;Journal of Cosmology and Astroparticle Physics;2024-05-01

3. Parity-violating scalar trispectrum from a rolling axion during inflation;Journal of Cosmology and Astroparticle Physics;2024-05-01

4. Can we explain cosmic birefringence without a new light field beyond Standard Model?;Journal of High Energy Physics;2024-01-11

5. COSMOGLOBE DR1 results;Astronomy & Astrophysics;2023-11

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