We examine whether renormalization effects can cause Newton¿s constant to change dramatically with energy, perhaps even reducing the scale of quantum gravity to the TeV region without the introduction of extra dimensions. We examine a model that realizes this possibility and describe experimental signatures from the production of small black holes
Over the past 15 years models with large extra space-time dimensions have been extensively studied. ...
We study quantum gravity effects for Myers-Perry black holes assuming that the leading contributions...
I discuss a model for quantized gravitation based on the simplicial lattice discretization. It has b...
Recently it has been pointed out that the characteristic quantum-gravity scale could be as low as th...
We examine whether renormalization effects can cause Newton's constant to change dramatically with e...
In this paper we investigate a possible energy scale dependence of the quantization rules and in par...
A set of features of the renormalization group improved Kerr spacetime taking into account the runni...
The nonperturbative renormalization group flow of Quantum Einstein Gravity (QEG) is reviewed. It is ...
We explore the possibility that the fundamental theory of nature does not contain any scale. This im...
We discuss the nature of quantum field theories involving gravity that are classically scale-invaria...
AbstractWe describe a model in which the fundamental scale M⋆ of the theory which unifies gravity an...
An effective quantum theory of gravitation in which gravity weakens at energies higher than ∼10−3 e...
AbstractLarge extra dimensions lower the Planck scale to values soon accessible. Motivated by string...
Quantum gravity can determine the dependence of gauge couplings in a scalar field, which is related ...
Quantum fluctuations of gravitational field with respect to the ADD braneworld background turns out ...
Over the past 15 years models with large extra space-time dimensions have been extensively studied. ...
We study quantum gravity effects for Myers-Perry black holes assuming that the leading contributions...
I discuss a model for quantized gravitation based on the simplicial lattice discretization. It has b...
Recently it has been pointed out that the characteristic quantum-gravity scale could be as low as th...
We examine whether renormalization effects can cause Newton's constant to change dramatically with e...
In this paper we investigate a possible energy scale dependence of the quantization rules and in par...
A set of features of the renormalization group improved Kerr spacetime taking into account the runni...
The nonperturbative renormalization group flow of Quantum Einstein Gravity (QEG) is reviewed. It is ...
We explore the possibility that the fundamental theory of nature does not contain any scale. This im...
We discuss the nature of quantum field theories involving gravity that are classically scale-invaria...
AbstractWe describe a model in which the fundamental scale M⋆ of the theory which unifies gravity an...
An effective quantum theory of gravitation in which gravity weakens at energies higher than ∼10−3 e...
AbstractLarge extra dimensions lower the Planck scale to values soon accessible. Motivated by string...
Quantum gravity can determine the dependence of gauge couplings in a scalar field, which is related ...
Quantum fluctuations of gravitational field with respect to the ADD braneworld background turns out ...
Over the past 15 years models with large extra space-time dimensions have been extensively studied. ...
We study quantum gravity effects for Myers-Perry black holes assuming that the leading contributions...
I discuss a model for quantized gravitation based on the simplicial lattice discretization. It has b...