Planck constraints on the scale dependence of isotropic cosmic birefringence

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Main Authors: Ballardini, M., Gruppuso, A., Paradiso, S., Sirletti, S. S., Natoli, P.
Format: Preprint
Published: 2025
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author Ballardini, M.
Gruppuso, A.
Paradiso, S.
Sirletti, S. S.
Natoli, P.
author_facet Ballardini, M.
Gruppuso, A.
Paradiso, S.
Sirletti, S. S.
Natoli, P.
contents The rotation of the linear polarisation plane of photons during propagation, also known as cosmic birefringence, is a powerful probe of parity-violating extensions of standard electromagnetism. Using Planck legacy data, we confirm previous estimates of the isotropic birefringence angle, finding $β\simeq 0.30 \pm 0.05$ [deg] at 68% CL, not including the systematic error from the instrumental polarisation angle. If this is a genuine signal, it could be explained by theories of Chern--Simons-type coupled to electromagnetism, which could lead to a harmonic scale-dependent birefringence signal, if the hypothesis of an ultra-light (pseudo) scalar field does not hold. To investigate these models, we pursue two complementary approaches: first, we fit the birefringence angle estimated at different multipoles, $β_{\ell}$, with a power-law model and second, we perform a non-parametric Bayesian reconstruction of it. Both methods yield results consistent with a non-vanishing constant birefringence angle. The first method shows no significant dependence on the harmonic scale (up to $1.8σ$ CL), while the second method demonstrates that a constant model is favored by Bayesian evidence. This conclusion is robust across all four published Planck CMB solutions. Finally, we forecast that upcoming CMB observations by Simons Observatory, LiteBIRD and a wishful CMB-Stage 4 experiment could reduce current uncertainties by a factor of approximately 7.
format Preprint
id arxiv_https___arxiv_org_abs_2507_16714
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Planck constraints on the scale dependence of isotropic cosmic birefringence
Ballardini, M.
Gruppuso, A.
Paradiso, S.
Sirletti, S. S.
Natoli, P.
Cosmology and Nongalactic Astrophysics
The rotation of the linear polarisation plane of photons during propagation, also known as cosmic birefringence, is a powerful probe of parity-violating extensions of standard electromagnetism. Using Planck legacy data, we confirm previous estimates of the isotropic birefringence angle, finding $β\simeq 0.30 \pm 0.05$ [deg] at 68% CL, not including the systematic error from the instrumental polarisation angle. If this is a genuine signal, it could be explained by theories of Chern--Simons-type coupled to electromagnetism, which could lead to a harmonic scale-dependent birefringence signal, if the hypothesis of an ultra-light (pseudo) scalar field does not hold. To investigate these models, we pursue two complementary approaches: first, we fit the birefringence angle estimated at different multipoles, $β_{\ell}$, with a power-law model and second, we perform a non-parametric Bayesian reconstruction of it. Both methods yield results consistent with a non-vanishing constant birefringence angle. The first method shows no significant dependence on the harmonic scale (up to $1.8σ$ CL), while the second method demonstrates that a constant model is favored by Bayesian evidence. This conclusion is robust across all four published Planck CMB solutions. Finally, we forecast that upcoming CMB observations by Simons Observatory, LiteBIRD and a wishful CMB-Stage 4 experiment could reduce current uncertainties by a factor of approximately 7.
title Planck constraints on the scale dependence of isotropic cosmic birefringence
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2507.16714