We calculate the impact of quantum gravity–motivated ultraviolet cutoffs on inflationary predictions for the cosmic microwave background spectrum. We model the ultraviolet cutoffs fully covariantly to avoid possible artifacts of covariance breaking. Imposing these covariant cutoffs results in the production of small, characteristically k-dependent oscillations in the spectrum. The size of the effect scales linearly with the ratio of the Planck to Hubble lengths during inflation. Consequently, the relative size of the effect could be as large as one part in 10^5; i.e., eventual observability may not be ruled out
AbstractThe cosmic microwave background can measure the inflaton potential only if inflation lasts s...
AbstractWe consider a minimum uncertainty vacuum choice at a fixed energy scale Λ as an effective de...
Whether the statistics of primordial fluctuations for structure formation are Gaussian or otherwise ...
Within the inflationary scenario, Planck scale physics should have affected the comoving modes' init...
As a potentially accessible window to aspects of Planck scale physics it has been pointed out that t...
While a natural ultraviolet cutoff, presumably at the Planck length, is widely assumed to exist in n...
The observed power spectrum of the cosmic microwave background (CMB) is consistent with inflationary...
We derive the semiclassical evolution of massless minimally coupled scalar matter in the de Sitter s...
International audienceWith the increasingly precise measurement of the cosmic microwave background (...
For a certain type of modified dispersion relations, the vacuum quantum state for very short wavelen...
We systematically investigate the effect of short distance physics on the spectrum of temperature an...
Inflation can act as a space-time microscope for Planck or string scale effects, leaving potentially...
International audienceWe compute the power spectrum of curvature perturbations in stochastic inflati...
Inflationary cosmology has proved to be the most successful at predicting the properties of the anis...
We derive a general expression for the power spectra of scalar and tensor fluctuations generated dur...
AbstractThe cosmic microwave background can measure the inflaton potential only if inflation lasts s...
AbstractWe consider a minimum uncertainty vacuum choice at a fixed energy scale Λ as an effective de...
Whether the statistics of primordial fluctuations for structure formation are Gaussian or otherwise ...
Within the inflationary scenario, Planck scale physics should have affected the comoving modes' init...
As a potentially accessible window to aspects of Planck scale physics it has been pointed out that t...
While a natural ultraviolet cutoff, presumably at the Planck length, is widely assumed to exist in n...
The observed power spectrum of the cosmic microwave background (CMB) is consistent with inflationary...
We derive the semiclassical evolution of massless minimally coupled scalar matter in the de Sitter s...
International audienceWith the increasingly precise measurement of the cosmic microwave background (...
For a certain type of modified dispersion relations, the vacuum quantum state for very short wavelen...
We systematically investigate the effect of short distance physics on the spectrum of temperature an...
Inflation can act as a space-time microscope for Planck or string scale effects, leaving potentially...
International audienceWe compute the power spectrum of curvature perturbations in stochastic inflati...
Inflationary cosmology has proved to be the most successful at predicting the properties of the anis...
We derive a general expression for the power spectra of scalar and tensor fluctuations generated dur...
AbstractThe cosmic microwave background can measure the inflaton potential only if inflation lasts s...
AbstractWe consider a minimum uncertainty vacuum choice at a fixed energy scale Λ as an effective de...
Whether the statistics of primordial fluctuations for structure formation are Gaussian or otherwise ...