A new line-of-sight approach to the non-linear Cosmic Microwave Background
arXiv:1409.2461 · doi:10.1088/1475-7516/2015/04/037
Abstract
We develop the transport operator formalism, a new line-of-sight integration framework to calculate the anisotropies of the Cosmic Microwave Background (CMB) at the linear and non-linear level. This formalism utilises a transformation operator that removes all inhomogeneous propagation effects acting on the photon distribution function, thus achieving a split between perturbative collisional effects at recombination and non-perturbative line-of-sight effects at later times. The former can be computed in the framework of standard cosmological perturbation theory with a second-order Boltzmann code such as SONG, while the latter can be treated within a separate perturbative scheme allowing the use of non-linear Newtonian potentials. We thus provide a consistent framework to compute all physical effects contained in the Boltzmann equation and to combine the standard remapping approach with Boltzmann codes at any order in perturbation theory, without assuming that all sources are localised at recombination.
Version published in JCAP. SONG beta is available at https://github.com/coccoinomane/song 17 pages, 1 figure
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- CMB spectral distortions as solutions to the Boltzmann equations
- Unified approach to secondary effects on the CMB B-mode polarization
- CMB anisotropies from patchy reionisation and diffuse Sunyaev-Zel'dovich effects
- Lensing anomalies from the epoch of reionisation
- The intrinsic bispectrum of the CMB from isocurvature initial conditions