Renormalisation group improvement of scalar field inflation
arXiv:1108.0422 · doi:10.1103/PhysRevD.85.043501
Abstract
We study quantum corrections to Friedmann-Robertson-Walker cosmology with a scalar field under the assumption that the dynamics are subject to renormalisation group improvement. We use the Bianchi identity to relate the renormalisation group scale to the scale factor and obtain the improved cosmological evolution equations. We study the solutions of these equations in the renormalisation group fixed point regime, obtaining the time-dependence of the scalar field strength and the Hubble parameter in specific models with monomial and trinomial quartic scalar field potentials. We find that power-law inflation can be achieved in the renormalisation group fixed point regime with the trinomial potential, but not with the monomial one. We study the transition to the quasi-classical regime, where the quantum corrections to the couplings become small, and find classical dynamics as an attractor solution for late times. We show that the solution found in the renormalisation group fixed point regime is also a cosmological fixed point in the autonomous phase space. We derive the power spectrum of cosmological perturbations and find that the scalar power spectrum is exactly scale-invariant and bounded up to arbitrarily small times, while the tensor perturbations are tilted as appropriate for the background power-law inflation. We specify conditions for the renormalisation group fixed point values of the couplings under which the amplitudes of the cosmological perturbations remain small.
17 pages; 2 figures
References in corpus (12)
- Dynamics of dark energy
- Fixed Points of Higher Derivative Gravity
- Ultraviolet properties of f(R)-Gravity
- On the renormalization group flow of f(R)-gravity
- Taming perturbative divergences in asymptotically safe gravity
- Renormalization group improved gravitational actions: a Brans-Dicke approach
- Inflationary solutions in asymptotically safe f(R) theories
- On fixed points of quantum gravity
- Asymptotically Safe Cosmology
- Primordial Entropy Production and Lambda-driven Inflation from Quantum Einstein Gravity
- Comment on Asymptotically Safe Inflation
- Evolution of cosmological perturbations in an RG-driven inflationary scenario
Cited by in corpus (21)
- Asymptotic safety of quantum gravity beyond Ricci scalars
- Asymptotically safe cosmology - a status report
- Quantum-gravity-induced matter self-interactions in the asymptotic-safety scenario
- On the UV structure of quantum unimodular gravity
- Asymptotically Safe Starobinsky Inflation
- An effective action for asymptotically safe gravity
- Scale Setting for Self-consistent Backgrounds
- Cosmological bounds on the field content of asymptotically safe gravity-matter models
- On de Sitter solutions in asymptotically safe theories
- Renormalization group scale-setting from the action - a road to modified gravity theories
- Confronting the relaxation mechanism for a large cosmological constant with observations
- Consistent early and late time cosmology from the RG flow of gravity
- Higgs inflation and quantum gravity: An exact renormalisation group approach
- Asymptotically Safe gravity and non-singular inflationary Big Bang with vacuum birth
- Asymptotically Safe Higgs Inflation
- Singularity formation in asymptotically safe cosmology with inhomogeneous equation of state
- Asymptotically safe phantom cosmology
- Revisiting slow-roll inflation in nonminimal derivative coupling with potentials
- Adiabatic regularisation of power spectra in nonminimally coupled chaotic inflation
- Entropic force, running gravitational coupling and future singularities
- Renormalization-Group Running Induced Cosmic Inflation