Orthogonal non-Gaussianities from Dirac-Born-Infeld Galileon inflation
arXiv:1105.6366 · doi:10.1088/0264-9381/28/24/249601
Abstract
We study the cosmology of the multifield relativistic Galileon model in which an induced gravity term is added to the Dirac-Born-Infeld action. We highlight the physical insight that is gained by employing a bimetric perspective in which the induced gravity and Einstein-Hilbert action are treated on equal footing. We derive the conditions under which a phase of quasi exponential inflation can be sustained and demonstrate the existence of a critical background energy density above which cosmological fluctuations become ghosts. At the non-linear level, this scenario provides the first concrete early Universe model in which the shape of the bispectrum can be predominantly of orthogonal type. More generally, we show that the shape and sign of the primordial non-Gaussianities act as powerful discriminants of the precise strength of the induced gravity.
5 pages, 1 figure. Matches published version + added references and misprints corrected
Cited by in corpus (17)
- Cosmology of the Galileon from Massive Gravity
- A formal introduction to Horndeski and Galileon theories and their generalizations
- Primordial non-Gaussianity from ultra slow-roll Galileon inflation
- Fast Estimation of Gravitational and Primordial Bispectra in Large Scale Structures
- Multi-field G-inflation
- On the redundancy of operators and the bispectrum in the most general second-order scalar-tensor theory
- Large fluctuations and Primordial Black Holes
- Multi-disformal invariance of nonlinear primordial perturbations
- On dark energy models of single scalar field
- Vainshtein mechanism in Gauss-Bonnet gravity and Galileon aether
- General CMB bispectrum analysis using wavelets and separable modes
- Primordial Black Holes from Effective Field Theory of Stochastic Single Field Inflation at NNNLO
- Trispectrum from Co-dimension 2(n) Galileons
- Principal Components of CMB non-Gaussianity
- Orthogonal non-Gaussianity in DBI Galileon: prospect for Planck polarisation and post-Planck experiments
- Neural Network Reconstruction of Non-Gaussian Initial Conditions from Dark Matter Halos
- Inflation from a generalized exponential plateau: towards extra suppressed tensor-to-scalar ratios