Patchy Screening of the Cosmic Microwave Background by Inhomogeneous Reionization
arXiv:1210.5507 · doi:10.1103/PhysRevD.87.047303
Abstract
We derive a constraint on patchy screening of the cosmic microwave background from inhomogeneous reionization, using off-diagonal TB and TT correlations in WMAP-7 temperature/polarization data. We interpret this as a constraint on the rms optical-depth fluctuation Δτ as a function of a coherence multipole Lc. We relate these parameters to a comoving coherence scale, of bubble size Rc, in a phenomenological model where reionization is instantaneous but occurs on a crinkly surface, and also to the bubble size in a model of "Swiss cheese" reionization where bubbles of fixed size are spread over some range of redshifts. The current WMAP data are still too weak, by several orders of magnitude, to constrain reasonable models, but forthcoming Planck and future EPIC data should begin to approach interesting regimes of parameter space. We also present constraints on the parameter space imposed by the recent results from the EDGES experiment.
4 pages, 5 figures; to be submitted to PRD
References in corpus (6)
- Cosmology at Low Frequencies: The 21 cm Transition and the High-Redshift Universe
- A lower limit of dz > 0.06 for the duration of the reionization epoch
- Reconstructing Patchy Reionization from the Cosmic Microwave Background
- De-Rotation of the Cosmic Microwave Background Polarization: Full-Sky Formalism
- B-mode CMB Polarization from Patchy Screening during Reionization
- CMBPol Mission Concept Study: A Mission to Map our Origins
Cited by in corpus (22)
- The Atacama Cosmology Telescope: Constraints on Cosmic Birefringence
- BICEP2 / Keck Array IX: New Bounds on Anisotropies of CMB Polarization Rotation and Implications for Axion-Like Particles and Primordial Magnetic Fields
- BICEP / Keck XVII: Line of Sight Distortion Analysis: Estimates of Gravitational Lensing, Anisotropic Cosmic Birefringence, Patchy Reionization, and Systematic Errors
- Baryons still trace dark matter: probing CMB lensing maps for hidden isocurvature
- Probing patchy reionization through tau-21cm correlation statistics
- Retrieving cosmological information from small-scale CMB foregrounds II. The kinetic Sunyaev Zel'dovich effect
- Statistical diagnostics to identify Galactic foregrounds in B-mode maps
- Inevitable imprints of patchy reionization on the cosmic microwave background anisotropy
- Constraints on Patchy Reionization from Planck CMB Temperature Trispectrum
- Reconstructing Patchy Reionization with Deep Learning
- Testing parity-violating physics from cosmic rotation power reconstruction
- CMB Mode Coupling with Isotropic Polarization Rotation
- Constraining reionization with the first measurement of the cross-correlation between the CMB optical-depth fluctuations and the Compton y-map
- Inference of gravitational lensing and patchy reionization with future CMB data
- Searching for patchy reionization from cosmic microwave background with hybrid quadratic estimators
- Is patchy reionization an obstacle in detecting the primordial gravitational wave signal?
- Constraints on from Planck temperature and polarization
- Detecting Electron Density Fluctuations from Cosmic Microwave Background Polarization using a Bispectrum Approach
- Cosmology from weak lensing of CMB
- Lensing anomalies from the epoch of reionisation
- Mapping neutral islands during end stages of reionization with photometric intergalactic medium tomography
- Cross-correlating the patchy screening and kinetic Sunyaev-Zel'dovich effects as a new probe of reionization