The purpose of this work is to investigate the consequences of quantum gravity for the singularity problem. We study the higher-derivative terms that invariably appear in any quantum field theoretical model of gravity, handling them both non-perturbatively and perturbatively. In the former case, by computing the contributions of the additional degrees of freedom to a congruence of geodesics, we show that the appearance of singularities is no longer a necessity. In the latter, which corresponds to treating the quantised general relativity as an effective field theory, we generalise the Hawking-Penrose theorems to include one-loop corrections of both massless matter and graviton fluctuations
This thesis focuses on modifications on Einstein’s theory of General Relativity, that could explain ...
Quantum General Relativity (QGR), sometimes called Loop Quantum Gravity, has matured over the past f...
General relativity successfully describes space-times at scales that we can observe and probe today,...
The purpose of this work is to investigate the consequences of quantum gravity for the singularity p...
In this paper, we discuss singularity theorems in quantum gravity using effective field theory metho...
In this paper we consider a static and regular fluid generating a locally spherically symmetric and ...
We consider the problem of Newtonian singularity in the wide class of higher derivative gravity mode...
General relativity successfully describes space–times at scales that we can observe and probe today,...
We study the extent of quantum gravitational effects in the internal region of non-singular, Hayward...
Both Einstein's theory of General Relativity and Newton?s theory of gravity possess a short distance...
Singularities in general relativity and quantum field theory are often taken not only to motivate th...
Loop quantum cosmology (LQC), mainly due to Bojowald, is not the cosmological sector of loop quantum...
Over time, the general theory of relativity has accumulated several anomalies and discrepancies, ind...
This thesis focuses on modifications on Einstein’s theory of General Relativity, that could explain ...
Quantum General Relativity (QGR), sometimes called Loop Quantum Gravity, has matured over the past f...
General relativity successfully describes space-times at scales that we can observe and probe today,...
The purpose of this work is to investigate the consequences of quantum gravity for the singularity p...
In this paper, we discuss singularity theorems in quantum gravity using effective field theory metho...
In this paper we consider a static and regular fluid generating a locally spherically symmetric and ...
We consider the problem of Newtonian singularity in the wide class of higher derivative gravity mode...
General relativity successfully describes space–times at scales that we can observe and probe today,...
We study the extent of quantum gravitational effects in the internal region of non-singular, Hayward...
Both Einstein's theory of General Relativity and Newton?s theory of gravity possess a short distance...
Singularities in general relativity and quantum field theory are often taken not only to motivate th...
Loop quantum cosmology (LQC), mainly due to Bojowald, is not the cosmological sector of loop quantum...
Over time, the general theory of relativity has accumulated several anomalies and discrepancies, ind...
This thesis focuses on modifications on Einstein’s theory of General Relativity, that could explain ...
Quantum General Relativity (QGR), sometimes called Loop Quantum Gravity, has matured over the past f...
General relativity successfully describes space-times at scales that we can observe and probe today,...