Rotation of the cosmic microwave background polarization from weak gravitational lensing
arXiv:1311.3662 · doi:10.1103/PhysRevLett.112.041303
Abstract
When a cosmic microwave background (CMB) photon travels from the surface of last scatter through spacetime metric perturbations, the polarization vector may rotate about its direction of propagation. This gravitational rotation is distinct from, and occurs in addition to, the lensing deflection of the photon trajectory. This rotation can be sourced by linear vector or tensor metric perturbations and is fully coherent with the curl deflection field. Therefore, lensing corrections to the CMB polarization power spectra as well as the temperature-polarization cross-correlations due to non-scalar perturbations are modified. The rotation does not affect lensing by linear scalar perturbations, but needs to be included when calculations go to higher orders. We present complete results for weak lensing of the full-sky CMB power spectra by general linear metric perturbations, taking into account both deflection of the photon trajectory and rotation of the polarization. For the case of lensing by gravitational waves, we show that the B modes induced by the rotation largely cancel those induced by the curl component of deflection.
5 pages, 3 figures, revised to match the version appeared in PRL
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- Impact of next-to-leading order contributions to CMB lensing
- Emission-angle and polarization-rotation effects in the lensed CMB
- Estimating the weak-lensing rotation signal in radio cosmic shear surveys
- Gauge-Invariant Formalism of Cosmological Weak Lensing
- Jacobi Mapping Approach for a Precise Cosmological Weak Lensing Formalism
- Rotation of the CMB polarisation by foreground lensing
- Future detectability of gravitational-wave induced lensing from high-sensitivity CMB experiments
- Unified approach to secondary effects on the CMB B-mode polarization
- Rotation of polarization by a moving gravitational lens
- Establishing the origin of CMB B-mode polarization
- Constraining stochastic gravitational wave background from weak lensing of CMB B-modes
- Gravitational rotation of polarization: Clarifying the gauge dependence and prediction for double pulsar