Cosmology of Bianchi type-I metric using renormalization group approach for quantum gravity
arXiv:1906.08674 · doi:10.1088/1361-6382/ab7287
Abstract
We study the anisotropic Bianchi type-I cosmological model at late times, taking into account quantum gravitational corrections in the formalism of the exact renormalization group flow of the effective average action for gravity. The cosmological evolution equations are derived by including the scale dependence of Newton's constant and cosmological constant . We have considered the solutions of the flow equations for and at next to leading order in the infrared cutoff scale. Using these scale dependent and in Einstein equations for the Bianchi-I model, we obtain the scale factors in different directions. It is shown that the scale factors eventually evolve into FLRW universe for known matter like radiation. However, for dust and stiff matter we find that the universe need not evolve to the FLRW cosmology in general, but can also show Kasner type behaviour.
20 pages Latex, manuscript revised and comments added
References in corpus (6)
- The Confrontation between General Relativity and Experiment
- Exact evolution equation for the effective potential
- One force to rule them all: asymptotic safety of gravity with matter
- Nonminimal hints for asymptotic safety
- Bianchi Type-I Cosmological Models with Variable G and 4Λ$-Terms in General Relativity
- Asymptotic safety of scalar field theories