We propose a new method for identifying new physics imprints on present observational data in cosmology whereby signatures of string theory are clearly distinguished from imprints of possible features on the inflaton potential. Our method relies on the cross-correlations spectra of cosmic shear from large scale structure (LSS) with the cosmic microwave background (CMB) temperature anisotropies and E-mode polarization, by using the following properties: inflationary cosmology provides only one source term for all CMB spectra and LSS which highly constrains any deviations from the standard predictions; string theory can add new noninflationary channels to the source of perturbations as well as modify clustering properties at large scales. Dis...
The cosmic string theory for cosmological fluctuations is a good example of healthy scientific progr...
Forthcoming cosmic microwave background experiments (CMB) will provide precise new tests of structur...
We propose to uncover the signature of a stringy era in the primordial Universe by searching for a p...
We propose a new method for identifying new physics imprints on present observational data in cosmol...
Predicting signatures of string theory on cosmological observables is not sufficient. Often the obse...
Predicting signatures of string theory on cosmological observables is not sufficient. Often the obse...
Fluctuations in the intensity and polarization of the cosmic microwave background (CMB) and the larg...
The Wilkinson Microwave Anisotropy Probe microwave background data may be giving us clues about new ...
In string theory, the traditional picture of a Universe that emerges from the inflation of a very sm...
Brane inflation is a specific realization of the inflationary universe scenario in the early univers...
Inflation is a phase of accelerated expansion, taking place at very high energy in the early Univers...
Fluctuations in the intensity and polarization of the cosmic microwave background (CMB) and the larg...
Throughout the years, the cosmic microwave background (CMB) has given a crucial contribution to buil...
We discuss several possibilities of probing string theory through cosmology, e.g., the imprints of s...
The cosmic string theory for cosmological fluctuations is a good example of healthy scientific progr...
Forthcoming cosmic microwave background experiments (CMB) will provide precise new tests of structur...
We propose to uncover the signature of a stringy era in the primordial Universe by searching for a p...
We propose a new method for identifying new physics imprints on present observational data in cosmol...
Predicting signatures of string theory on cosmological observables is not sufficient. Often the obse...
Predicting signatures of string theory on cosmological observables is not sufficient. Often the obse...
Fluctuations in the intensity and polarization of the cosmic microwave background (CMB) and the larg...
The Wilkinson Microwave Anisotropy Probe microwave background data may be giving us clues about new ...
In string theory, the traditional picture of a Universe that emerges from the inflation of a very sm...
Brane inflation is a specific realization of the inflationary universe scenario in the early univers...
Inflation is a phase of accelerated expansion, taking place at very high energy in the early Univers...
Fluctuations in the intensity and polarization of the cosmic microwave background (CMB) and the larg...
Throughout the years, the cosmic microwave background (CMB) has given a crucial contribution to buil...
We discuss several possibilities of probing string theory through cosmology, e.g., the imprints of s...
The cosmic string theory for cosmological fluctuations is a good example of healthy scientific progr...
Forthcoming cosmic microwave background experiments (CMB) will provide precise new tests of structur...
We propose to uncover the signature of a stringy era in the primordial Universe by searching for a p...