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POLARBEAR Constraints on Cosmic Birefringence and Primordial Magnetic Fields

2 Pith papers cite this work. Polarity classification is still indexing.

2 Pith papers citing it
abstract

We constrain anisotropic cosmic birefringence using four-point correlations of even-parity $E$-mode and odd-parity $B$-mode polarization in the cosmic microwave background measurements made by the POLARization of the Background Radiation (POLARBEAR) experiment in its first season of observations. We find that the anisotropic cosmic birefringence signal from any parity-violating processes is consistent with zero. The Faraday rotation from anisotropic cosmic birefringence can be compared with the equivalent quantity generated by primordial magnetic fields if they existed. The POLARBEAR nondetection translates into a 95% confidence level (C.L.) upper limit of 93 nanogauss (nG) on the amplitude of an equivalent primordial magnetic field inclusive of systematic uncertainties. This four-point correlation constraint on Faraday rotation is about 15 times tighter than the upper limit of 1380 nG inferred from constraining the contribution of Faraday rotation to two-point correlations of $B$-modes measured by Planck in 2015. Metric perturbations sourced by primordial magnetic fields would also contribute to the $B$-mode power spectrum. Using the POLARBEAR measurements of the $B$-mode power spectrum (two-point correlation), we set a 95% C.L. upper limit of 3.9 nG on primordial magnetic fields assuming a flat prior on the field amplitude. This limit is comparable to what was found in the Planck 2015 two-point correlation analysis with both temperature and polarization. We perform a set of systematic error tests and find no evidence for contamination. This work marks the first time that anisotropic cosmic birefringence or primordial magnetic fields have been constrained from the ground at subdegree scales.

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background 1 baseline 1

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years

2026 1 2019 1

representative citing papers

A short review on Quintom dark energy theory

astro-ph.CO · 2026-05-31 · conditional · novelty 2.0

A review arguing that current DESI/DES data favor Quintom-B dark energy, where the equation of state crosses w=-1 from below to above, with applications to bounces and CMB birefringence.

citing papers explorer

Showing 2 of 2 citing papers.

  • CMB-S4 Science Case, Reference Design, and Project Plan astro-ph.IM · 2019-07-10 · unverdicted · none · ref 258 · internal anchor

    Presents the science case, reference design, and project plan for the CMB-S4 ground-based CMB experiment.

  • A short review on Quintom dark energy theory astro-ph.CO · 2026-05-31 · conditional · none · ref 186 · internal anchor

    A review arguing that current DESI/DES data favor Quintom-B dark energy, where the equation of state crosses w=-1 from below to above, with applications to bounces and CMB birefringence.