Cosmic inflation provides a window to the highest energy densities accessible in nature, far beyond those achievable in any realistic terrestrial experiment. Theoretical insights into the inflationary era and its observational probes may therefore shed unique light on the physical laws underlying our universe. This white paper describes our current theoretical understanding of the inflationary era, with a focus on the statistical properties of primordial fluctuations. In particular, we survey observational targets for three important signatures of inflation: primordial gravitational waves, primordial non-Gaussianity and primordial features. With the requisite advancements in analysis techniques, the tremendous increase in the raw sensitivit...
Observation supports the theory that the large-scale structure in the Universe was seeded by primord...
The inflationary Universe resolves some of the most outstanding issues of standard cosmology inc...
This thesis is dedicated to the exploration of the primordial dark ages: unknown physics during the ...
Cosmic inflation provides a window to the highest energy densities accessible in nature, far beyond ...
Cosmic inflation provides a window to the highest energy densities accessible in nature, far beyond ...
textThe inflationary paradigm has become widely accepted as an accurate framework in which to descri...
International audienceInflation may provide unique insight into the physics at the highest available...
Inflation may provide unique insight into the physics at the highest available energy scales that ca...
Since the discovery of the cosmic microwave background (CMB), our understanding of the cosmos has be...
We introduce a new method for experimentally testing the inflationary paradigm: the suggestion that ...
International audienceThe observational status of inflation after the Planck 2013 and 2015 results a...
This thesis contributes to studying primordial cosmology theories and their detectability in future ...
Fluctuations in the intensity and polarization of the cosmic microwave background (CMB) and the lar...
Observation supports the theory that the large-scale structure in the Universe was seeded by primord...
The inflationary Universe resolves some of the most outstanding issues of standard cosmology inc...
This thesis is dedicated to the exploration of the primordial dark ages: unknown physics during the ...
Cosmic inflation provides a window to the highest energy densities accessible in nature, far beyond ...
Cosmic inflation provides a window to the highest energy densities accessible in nature, far beyond ...
textThe inflationary paradigm has become widely accepted as an accurate framework in which to descri...
International audienceInflation may provide unique insight into the physics at the highest available...
Inflation may provide unique insight into the physics at the highest available energy scales that ca...
Since the discovery of the cosmic microwave background (CMB), our understanding of the cosmos has be...
We introduce a new method for experimentally testing the inflationary paradigm: the suggestion that ...
International audienceThe observational status of inflation after the Planck 2013 and 2015 results a...
This thesis contributes to studying primordial cosmology theories and their detectability in future ...
Fluctuations in the intensity and polarization of the cosmic microwave background (CMB) and the lar...
Observation supports the theory that the large-scale structure in the Universe was seeded by primord...
The inflationary Universe resolves some of the most outstanding issues of standard cosmology inc...
This thesis is dedicated to the exploration of the primordial dark ages: unknown physics during the ...