Pith. sign in

Constraints on cosmic birefringence using $E$-mode polarisation

1 Pith paper cite this work. Polarity classification is still indexing.

1 Pith paper citing it
abstract

A birefringent universe could show itself through a rotation of the plane of polarisation of the cosmic microwave background photons. This is usually investigated using polarisation $B$ modes, which is degenerate with miscalibration of the orientation of the polarimeters. Here we point out an independent method for extracting the birefringence angle using only temperature and $E$-mode signals. We forecast that, with an ideal cosmic-variance-limited experiment, we could constrain a birefringence angle of $0.3^\circ$ with $3\,\sigma$ statistical significance, which is close to the current constraints using $B$ modes. We explore how this method is affected by the systematic errors introduced by the polarisation efficiency. In the future, this could provide an additional way of checking any claimed $B$-mode derived birefringence signature.

citation-role summary

baseline 1

citation-polarity summary

fields

astro-ph.CO 1

years

2025 1

verdicts

CONDITIONAL 1

roles

baseline 1

polarities

baseline 1

representative citing papers

Planck PR4 (NPIPE) map-space cosmic birefringence

astro-ph.CO · 2025-02-11 · conditional · novelty 4.0

A map-space stacking analysis of Planck PR4 maps finds a CMB polarization rotation angle of about 0.46 to 0.48 degrees, dominated by instrument calibration uncertainty and consistent with no parity-violating cosmic birefringence.

citing papers explorer

Showing 1 of 1 citing paper.

  • Planck PR4 (NPIPE) map-space cosmic birefringence astro-ph.CO · 2025-02-11 · conditional · none · ref 42 · internal anchor

    A map-space stacking analysis of Planck PR4 maps finds a CMB polarization rotation angle of about 0.46 to 0.48 degrees, dominated by instrument calibration uncertainty and consistent with no parity-violating cosmic birefringence.