Primordial Circular Polarization in the Cosmic Microwave Background
arXiv:1811.05953 · doi:10.1016/j.physletb.2018.12.037
Abstract
Circular ("V-mode") polarization is expected to be vanishing in the CMB, since it is not produced in Thomson scattering. However, considering that the conventional CMB anisotropies are generated via an early universe mechanism such as inflation or a bouncing scenario, it is possible that circular polarization could be primordially produced and survive to the surface of last scattering. We study this in detail, and find a large class of inflationary models that produce a nearly scale invariant spectrum of scalar V-mode anisotropies. We study the inflationary production and subsequent evolution via the Boltzmann hierarchy, and show that V-mode polarization present in the CMB is suppressed by a factor of at least relative to the primordial , consistent with expectation of negligible V-mode polarization from inflation. We consider alternative possibilities for sourcing primordially, such as the V-mode polarization induced by circularly polarized primordial gravitational waves, or producing after inflation, via new interactions at recombination.
8 pages, 1 figure. v2: references added. v3:matches published version. v4:typo corrected
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Cited by in corpus (7)
- Chirality of Gravitational Waves in Chern-Simons Gravity Cosmology
- CMB circular and B-mode polarization from new interactions
- CMB modes from photon-photon forward scattering revisited
- Physics Beyond The Standard Model with Circular Polarization in the CMB and CMB-21cm Cross-Correlation
- CMB polarization as a tool to constrain the optical properties of the Universe
- Circular polarization of cosmic photons due to their interactions with Sterile neutrino dark matter
- Spin Hall effect of light in inhomogeneous axion field