CMB Faraday rotation as seen through the Milky Way
arXiv:1305.7225 · doi:10.1103/PhysRevD.88.063527
Abstract
Faraday Rotation (FR) of CMB polarization, as measured through mode-coupling correlations of E and B modes, can be a promising probe of a stochastic primordial magnetic field (PMF). While the existence of a PMF is still hypothetical, there will certainly be a contribution to CMB FR from the magnetic field of the Milky Way. We use existing estimates of the Milky Way rotation measure (RM) to forecast its detectability with upcoming and future CMB experiments. We find that the galactic RM will not be seen in polarization measurements by Planck, but that it will need to be accounted for by CMB experiments capable of detecting the weak lensing contribution to the B-mode. We then discuss prospects for constraining the PMF in the presence of FR due to the galaxy under various assumptions that include partial de-lensing and partial subtraction of the galactic FR. We find that a realistic future sub-orbital experiment, covering a patch of the sky near the galactic poles, can detect a scale-invariant PMF of 0.1 nano-Gauss at better than 95% confidence level, while a dedicated space-based experiment can detect even smaller fields.
References added, minor typos and errors fixed, presentation and figures improved, matches the version accepted by Phys Rev D, 11 pages, 6 figures, 2 tables
References in corpus (8)
- CMBPol Mission Concept Study: Probing Inflation with CMB Polarization
- Cosmic Microwave Background Statistics for a Direction-Dependent Primordial Power Spectrum
- How to De-Rotate the Cosmic Microwave Background Polarization
- De-Rotation of the Cosmic Microwave Background Polarization: Full-Sky Formalism
- Faraday Rotation Limits on a Primordial Magnetic Field from WMAP Five-Year Data
- Constraining a spatially dependent rotation of the Cosmic Microwave Background Polarization
- The Evolution of the Large-Scale Tail of Primordial Magnetic Fields
- Constraints on standard and non-standard early Universe models from CMB B-mode polarization
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- Searching for Anisotropic Cosmic Birefringence with Polarization Data from SPTpol
- Self-Calibration of BICEP1 Three-Year Data and Constraints on Astrophysical Polarization Rotation
- Constraints on Primordial Magnetic Fields from Planck combined with the South Pole Telescope CMB B-mode polarization measurements
- BICEP2 / Keck Array IX: New Bounds on Anisotropies of CMB Polarization Rotation and Implications for Axion-Like Particles and Primordial Magnetic Fields
- Future CMB constraints on cosmic birefringence and implications for fundamental physics
- Consistency of Planck, ACT and SPT constraints on magnetically assisted recombination and forecasts for future experiments
- Constraints on primordial magnetic fields from magnetically-induced perturbations: current status and future perspectives with LiteBIRD and future ground based experiments
- Planck 2018 constraints on anisotropic birefringence and its cross-correlation with CMB anisotropy
- BICEP / Keck XVII: Line of Sight Distortion Analysis: Estimates of Gravitational Lensing, Anisotropic Cosmic Birefringence, Patchy Reionization, and Systematic Errors
- Circular Polarization of the CMB: A probe of the First stars
- Circular polarization of the CMB: Foregrounds and detection prospects
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- Searching for primordial magnetism with multi-frequency CMB experiments
- Testing parity-violating physics from cosmic rotation power reconstruction
- Magneto-optic effects of the Cosmic Microwave Background
- Galactic Faraday rotation effect on polarization of 21 cm lines from the epoch of reionization
- The Impact of Primordial Magnetic Fields on Future CMB Bounds on Inflationary Gravitational Waves
- Impact of Anisotropic Birefringence on Measuring Cosmic Microwave Background Lensing
- Finding Evidence for Inflation and the Origin of Galactic Magnetic Fields with CMB Surveys
- Forecast of CMB TB and EB correlations for AliCPT-1
- Constraining cosmic polarization rotation and implications for primordial B-modes
- Detectability of Galactic Faraday Rotation in Multi-wavelength CMB Observations: A Cross-Correlation Analysis of CMB and Radio Maps