Another look to distortions of the CMB spectrum
arXiv:1512.04816 · doi:10.1088/1475-7516/2016/03/047
Abstract
We review aspects of Cosmic Microwave Background (CMB) spectral distortions which do not appear to have been fully explored in the literature. In particular, implications of recent evidences of heating of the intergalactic medium (IGM) by feedback from active galactic nuclei are investigated. Taking also into account the IGM heating associated to structure formation, we argue that values of the y parameter of several*10^(-6), i.e. a factor of a few below the COBE/FIRAS upper limit, are to be expected. The Compton scattering by the re-ionized plasma also re-processes primordial distortions, adding a y-type contribution. Hence no pure Bose-Einstein-like distortions are to be expected. An assessment of Galactic and extragalactic foregrounds, taking into account the latest results from the Planck satellite as well as the contributions from the strong CII and CO lines from star-forming galaxies, demonstrates that a foreground subtraction accurate enough to fully exploit the PIXIE sensitivity will be extremely challenging. Motivated by this fact we also discuss methods to detect spectral distortions not requiring absolute measurements and show that accurate determinations of the frequency spectrum of the CMB dipole amplitude may substantially improve over COBE/FIRAS limits on distortion parameters. Such improvements may be at reach of next generation CMB anisotropy experiments. The estimated amplitude of the Cosmic Infrared Background (CIB) dipole might be detectable by careful analyses of Planck maps at the highest frequencies. Thus Planck might provide interesting constraints on the CIB intensity, currently known with a ~30% uncertainty.
35 pages, 8 figures, extended version of the invited review presented by GDZ at the conference CMB@50, at Princeton University, 10-12 June 2015
Cited by in corpus (22)
- Which spectral distortions does CDM actually predict?
- The synergy between CMB spectral distortions and anisotropies
- Spectral distortion constraints on photon injection from low-mass decaying particles
- Dissecting the high-z interstellar medium through intensity mapping cross-correlations
- Thermalization of large energy release in the early Universe
- -Distortions or Running: A Guaranteed Discovery from CMB Spectrometry
- Exploring Cosmic Origins with CORE: Extragalactic sources in Cosmic Microwave Background maps
- Mapping the relativistic electron gas temperature across the sky
- Observing patchy reionization with future CMB polarization experiments
- Exploring cosmic origins with CORE: effects of observer peculiar motion
- Probing large-scale magnetism with the Cosmic Microwave Background
- Constraining reionization with the first measurement of the cross-correlation between the CMB optical-depth fluctuations and the Compton y-map
- New Horizons in Cosmology with Spectral Distortions of the Cosmic Microwave Background
- The Distortion of the Cosmic Microwave Background Spectrum Due to Intergalactic Dust
- Least response method to separate CMB spectral distortions from foregrounds
- Missing dust signature in the cosmic microwave background
- Separation of CMB spectral distortions from foregrounds with poorly defined spectral shapes
- Effects of observer peculiar motion on the isotropic background frequency spectrum: from monopole to higher multipoles
- Spectral Distortion Signatures of Step-like Inflationary Potential
- Predictions for the diffuse cosmic dipole at radio frequencies from reionization imprints
- Primordial nucleosynthesis constraints on high-z energy releases
- Challenges and prospects for better measurements of the CMB intensity spectrum