We study the infrared scale expansion of single field cosmological models using the Hamilton-Jacobi formalism, showing that its specialization at unit scale parameter recovers the slow roll expansion. In particular, we show that the latter coincides with a Laurent expansion of the Hamilton-Jacobi function in powers of the Planck mass, whose terms are controlled by certain recursively-defined polynomials. This allows us to give an explicit recursion procedure for constructing all higher order terms of the slow roll expansion. We also discuss the corresponding effective potential and the action of the universal similarity group.Comment: 52 pages, no figure
We consider Galileon inflation in the Effective Field Theory (EFT) framework and examine the possibi...
We consider dynamics of the massive minimally coupled scalar field theory in an expanding Friedmann-...
We present a detailed exposition on the prospects of the formation of Primordial Black Holes (PBHs) ...
We use the Hamilton-Jacobi formalism to derive asymptotic solutions to the dynamical equations for i...
The next generation of cosmological observations will be sensitive to small deviations from a pure p...
International audienceSlow-roll inflation is studied as an effective field theory. We find that the ...
We derive consistency conditions for sustained slow roll and rapid turn inflation in two-field cosmo...
Epoka inflacji to jeden z najważniejszych elementów współczesnych modeli ewolucji wczesnego Wszechśw...
Inflationary cosmology proposes that the early Universe undergoes accelerated expansion, driven, in ...
Inflation is often described through the dynamics of a scalar field, slow-rolling in a suitable pote...
14 pages, no figures, version to appear in Phys Rev DSlow-roll inflation is studied as an effective ...
We generalize previously derived analytic results for the one-loop power spectrum (PS) in scale-free...
20 pages, 1 figure, Opening Lecture at JGRG15 Tokyo, Japan, November 2005. Lecture at Miami05, Key B...
We explore in detail the dynamics of multi-field inflationary models. We first revisit the two-field...
We investigate all single-field, slow-roll inflationary models whose slow-roll parameters scale as 1...
We consider Galileon inflation in the Effective Field Theory (EFT) framework and examine the possibi...
We consider dynamics of the massive minimally coupled scalar field theory in an expanding Friedmann-...
We present a detailed exposition on the prospects of the formation of Primordial Black Holes (PBHs) ...
We use the Hamilton-Jacobi formalism to derive asymptotic solutions to the dynamical equations for i...
The next generation of cosmological observations will be sensitive to small deviations from a pure p...
International audienceSlow-roll inflation is studied as an effective field theory. We find that the ...
We derive consistency conditions for sustained slow roll and rapid turn inflation in two-field cosmo...
Epoka inflacji to jeden z najważniejszych elementów współczesnych modeli ewolucji wczesnego Wszechśw...
Inflationary cosmology proposes that the early Universe undergoes accelerated expansion, driven, in ...
Inflation is often described through the dynamics of a scalar field, slow-rolling in a suitable pote...
14 pages, no figures, version to appear in Phys Rev DSlow-roll inflation is studied as an effective ...
We generalize previously derived analytic results for the one-loop power spectrum (PS) in scale-free...
20 pages, 1 figure, Opening Lecture at JGRG15 Tokyo, Japan, November 2005. Lecture at Miami05, Key B...
We explore in detail the dynamics of multi-field inflationary models. We first revisit the two-field...
We investigate all single-field, slow-roll inflationary models whose slow-roll parameters scale as 1...
We consider Galileon inflation in the Effective Field Theory (EFT) framework and examine the possibi...
We consider dynamics of the massive minimally coupled scalar field theory in an expanding Friedmann-...
We present a detailed exposition on the prospects of the formation of Primordial Black Holes (PBHs) ...