Non-Gaussianity constraints from Planck spectral distortion cross-correlations
arXiv:2205.15971 · doi:10.1093/mnras/stac2082
Abstract
Primordial non-Gaussianity can source -distortion anisotropies that are correlated with the large-scale temperature and polarization signals of the cosmic microwave background (CMB). A measurement of and correlations can therefore be used to constrain it on wavelengths of perturbations not directly probed by the standard CMB anisotropies. In this work, we carry out a first rigorous search for -type spectral distortion anisotropies with \Planck data, applying the well-tested constrained ILC component-separation method combined with the needlet framework. We reconstruct a map from \Planck data, which we then correlate with the CMB anisotropies to derive constraints on the amplitude $\fNL$ of the local form bispectrum, specifically on the highly squeezed configurations with effective wavenumbers $k_s \simeq \SI{740}{Mpc^{-1}}$ and $k_L \simeq \SI{0.05}{Mpc^{-1}}$. We improve previously estimated constraints by more than an order of magnitude. This enhancement is owing to the fact that for the first time we are able to use the full multipole information by carefully controlling biases and systematic effects in the final analysis. We also for the first time incorporate constraints from measurements of correlations, which further tighten the limits. A combination of the derived \Planck and power spectra yields $|\fNL| \lesssim 6800$ (95\% c.l.) on this highly squeezed bispectrum. This is only times weaker than the anticipated constraint from \LiteBIRD alone. We show that a combination of \LiteBIRD with \Planck will improve the expected future constraint by over \LiteBIRD alone. These limits can be used to constrain multi-field inflation models and primordial black hole formation scenarios, thus providing a promising novel avenue forward in CMB cosmology.
Comments welcome. Submitted to MNRAS
References in corpus (14)
- In the Realm of the Hubble tension a Review of Solutions
- A full sky, low foreground, high resolution CMB map from WMAP
- Scale-dependent non-Gaussianity probes inflationary physics
- A generalized local ansatz and its effect on halo bias
- The synergy between CMB spectral distortions and anisotropies
- Probing the scale dependence of non-Gaussianity with spectral distortions of the cosmic microwave background
- Consistency conditions and primordial black holes in single field inflation
- Evolution of CMB spectral distortion anisotropies and tests of primordial non-Gaussianity
- Primordial non-Gaussianity with -type and -type spectral distortions: exploiting Cosmic Microwave Background polarization and dealing with secondary sources
- Cosmological constraints from cross-correlations
- CMB cross-correlations as a probe of PBH scenarios
- Spectral Distortion Anisotropy from Inflation for Primordial Black Holes
- Primordial tensor bispectra in -CMB cross-correlations
- Leverage on small-scale primordial non-Gaussianity through cross-correlations between CMB -mode and -distortion anisotropies
Cited by in corpus (4)
- Primordial Non-Gaussianity and Anisotropies in Scalar-Induced Gravitational Waves
- Exploring the effects of primordial non-Gaussianity at galactic scales
- Spectral Distortion Signatures of Step-like Inflationary Potential
- Primordial magnetic non-Gaussianity with generic vacua and detection prospects in CMB spectral distortions