UV-Protected Inflation
arXiv:1012.0853 · doi:10.1103/PhysRevLett.106.161302
Abstract
In Natural Inflation, the Inflaton is a pseudo-Nambu-Goldstone boson which acquires a mass by explicit breaking of a global shift symmetry at scale f. In this case, for small field values, the potential is flat and stable under radiative corrections. Nevertheless, slow roll conditions enforce f>>M_p making the validity of the whole scenario questionable. In this letter, we show that a coupling of the Inflaton kinetic term to the Einstein tensor allows f<<M_p by enhancing the gravitational friction acting on the Inflaton during inflation. This new unique interaction, a) keeps the theory perturbative in the whole inflationary trajectory, b) preserves the tree-level shift invariance of the pseudo-Nambu-Goldstone Boson and c) avoids the introduction of any new degrees of freedom with respect the standard Natural Inflation.
5 pages; v3: Minkowski limit of the "strong coupling scale" corrected; results unchanged; accepted in Phys. Rev. Lett. 2011
References in corpus (5)
Cited by in corpus (39)
- Black holes with non-minimal derivative coupling
- Mimetic gravity: a review of recent developments and applications to cosmology and astrophysics
- Physics potential of the International Axion Observatory (IAXO)
- Asymptotically locally AdS and flat black holes in the presence of an electric field in the Horndeski scenario
- Black Holes in Bi-scalar Extensions of Horndeski Theories
- On the consistency of universally non-minimally coupled theories
- Scalar induced gravitational waves in inflation with gravitationally enhanced friction
- Aligned Natural Inflation: Monodromies of two Axions
- Natural Inflation: Consistency with Cosmic Microwave Background Observations of Planck and BICEP2
- Gauge-flation trajectories in Chromo-Natural Inflation
- Multi-Natural Inflation in Supergravity
- Potential-driven Galileon inflation
- How Many -Folds Should We Expect from High-Scale Inflation?
- Fab Four: When John and George play gravitation and cosmology
- The effective field theory of inflation/dark energy and the Horndeski theory
- Gravitational Waves and Scalar Perturbations from Spectator Fields
- Building a Holographic Superconductor with a Scalar Field Coupled Kinematically to Einstein Tensor
- Warming up cold inflation
- Reheating predictions in Gravity Theories with Derivative Coupling
- Slow-roll inflation in gravity with a mixing term
- Helical Phase Inflation
- Topological black hole in the theory with nonminimal derivative coupling with power-law Maxwell field and its thermodynamics
- Stability of black holes with non-minimally coupled scalar hair to the Einstein tensor
- Higher Derivative D-term Inflation in New-minimal Supergravity
- Gravitational Wave from Axion-SU(2) Gauge Fields: Effective Field Theory for Kinetically Driven Inflation
- Growth of power spectrum due to decrease of sound speed during inflation
- Primordial non-Guassianity in inflation with gravitationally enhanced friction
- Viable dark energy models using pseudo-Nambu-Goldstone bosons
- Ruling out an inflation driven by a power law potential: kinetic coupling does not help
- Chromo-natural inflation supported by enhanced friction from Horndeski gravity
- Einstein-Horndeski gravity and the ultra slowly evaporating black hole
- Modified natural inflation: A small single field model with a large tensor to scalar ratio
- Curvaton reheating in non-minimal derivative coupling to gravity: NO models
- The reheating constraints to natural inflation in Horndeski gravity
- Dynamics of holographic dark energy with apparent-horizon cutoff and non-minimal derivative coupling gravity in non-flat FLRW universe
- Hitchhiker's Guide to the Swampland: The Cosmologist's Handbook to the string-theoretical Swampland Programme
- Cosmology in holographic non-minimal derivative coupling theory: constraints from inflation and variation of gravitational constant
- Consistency Relation and Non-Gaussianity in a Galileon Inflation
- Exit from accelerated regimes by symmetry breaking in a universe filled with fermionic and bosonic sources