English

The Origin of Parity Violation in Polarized Dust Emission and Implications for Cosmic Birefringence

Astrophysics of Galaxies 2021-09-29 v1 Cosmology and Nongalactic Astrophysics

Abstract

Recent measurements of Galactic polarized dust emission have found a nonzero TBTB signal, a correlation between the total intensity and the BB-mode polarization component. We present evidence that this parity-odd signal is driven by the relative geometry of the magnetic field and the filamentary interstellar medium in projection. Using neutral hydrogen morphology and Planck polarization data, we find that the angle between intensity structures and the plane-of-sky magnetic field orientation is predictive of the signs of Galactic TBTB and EBEB. Our results suggest that magnetically misaligned filamentary dust structures introduce nonzero TBTB and EBEB correlations in the dust polarization, and that the intrinsic dust EBEB can be predicted from measurements of dust TBTB and TETE over the same sky mask. We predict correlations between TETE, TBTB, EBEB, and EE/BBEE/BB, and confirm our predictions using synthetic dust polarization maps from magnetohydrodynamic simulations. We introduce and measure a scale-dependent effective magnetic misalignment angle, ψdust5\psi_\ell^{dust} \sim 5^\circ for 100500100 \lesssim \ell \lesssim 500, and predict a positive intrinsic dust EBEB with amplitude <DEB>2.5 μKCMB2\left<D_\ell^{EB}\right> \lesssim 2.5~\mu\mathrm{K^2_{CMB}} for the same multipole range at 353 GHz over our sky mask. Both the sign and amplitude of the Galactic EBEB signal can change with the sky area considered. Our results imply that searches for parity violation in the cosmic microwave background must account for the nonzero Galactic EBEB and TBTB signals, necessitating revision of existing analyses of the evidence for cosmic birefringence.

Keywords

Cite

@article{arxiv.2105.00120,
  title  = {The Origin of Parity Violation in Polarized Dust Emission and Implications for Cosmic Birefringence},
  author = {S. E. Clark and Chang-Goo Kim and J. Colin Hill and Brandon S. Hensley},
  journal= {arXiv preprint arXiv:2105.00120},
  year   = {2021}
}

Comments

17 pages, 9 figures, submitted to ApJ