AbstractThe renormalization group (RG) properties of quantum gravity are explored, using the vielbein and the spin connection as the fundamental field variables. The scale dependent effective action is required to be invariant both under spacetime diffeomorphisms and local frame rotations. The nonperturbative RG equation is solved explicitly on the truncated theory space defined by a three-parameter family of Holst-type actions which involve a running Immirzi parameter. We find evidence for the existence of an asymptotically safe fundamental theory, probably inequivalent to metric quantum gravity constructed in the same way
Quantum gravity is analyzed from the viewpoint of the renormalization group. The analysis is based o...
Quantum gravity is analyzed from the viewpoint of the renormalization group. The analysis is based o...
The Wilsonian renormalization group (RG) requires Euclidean signature. The conformal factor of the m...
We study the non-perturbative renormalization group flow of f(R)-gravity in three-dimensional Asympt...
Usually, General Relativity (GR) is known to be unrenormalizable perturbatively from the viewpoint o...
Among the different approaches for a construction of a fundamental quantum theory of gravity the Asy...
We use the Wetterich-equation to study the renormalization group flow of f (R)-gravity in a three-di...
Among the different approaches for a construction of a fundamental quantum theory of gravity the Asy...
We find considerable evidence supporting the conjecture that four-dimensional Quantum Einstein Gravi...
We use the Wetterich-equation to study the renormalization group flow of f ( R )-gravity in a three-...
We study perturbative quantum gravity in the first-order tetrad formalism. The lowest order action c...
Understanding gravity as a fundamental theory implies understanding its behavior as we move across d...
We construct a novel Wetterich-type functional renormalization group equation for gravity which enco...
The exact renormalization group equation for pure quantum gravity is used to derive the non-perturba...
The non-perturbative renormalisation of quantum gravity is investigated allowing for the metric to b...
Quantum gravity is analyzed from the viewpoint of the renormalization group. The analysis is based o...
Quantum gravity is analyzed from the viewpoint of the renormalization group. The analysis is based o...
The Wilsonian renormalization group (RG) requires Euclidean signature. The conformal factor of the m...
We study the non-perturbative renormalization group flow of f(R)-gravity in three-dimensional Asympt...
Usually, General Relativity (GR) is known to be unrenormalizable perturbatively from the viewpoint o...
Among the different approaches for a construction of a fundamental quantum theory of gravity the Asy...
We use the Wetterich-equation to study the renormalization group flow of f (R)-gravity in a three-di...
Among the different approaches for a construction of a fundamental quantum theory of gravity the Asy...
We find considerable evidence supporting the conjecture that four-dimensional Quantum Einstein Gravi...
We use the Wetterich-equation to study the renormalization group flow of f ( R )-gravity in a three-...
We study perturbative quantum gravity in the first-order tetrad formalism. The lowest order action c...
Understanding gravity as a fundamental theory implies understanding its behavior as we move across d...
We construct a novel Wetterich-type functional renormalization group equation for gravity which enco...
The exact renormalization group equation for pure quantum gravity is used to derive the non-perturba...
The non-perturbative renormalisation of quantum gravity is investigated allowing for the metric to b...
Quantum gravity is analyzed from the viewpoint of the renormalization group. The analysis is based o...
Quantum gravity is analyzed from the viewpoint of the renormalization group. The analysis is based o...
The Wilsonian renormalization group (RG) requires Euclidean signature. The conformal factor of the m...