We study a tentative generally covariant quantum field theory, denoted the T-Theory, as a tool to investigate the consistency of quantum general relativity. The theory describes the gravitational field and a minimally coupled scalar field; it is based on the loop representation, and on a certain number of quantization choices. Four-dimensional diffeomorphism-invariant quantum transition probabilities can be computed from the theory. We present the explicit calculation of the transition probability between two volume eigenstates as an example. We discuss the choices on which the T-theory relies, and the possibilities of modifying them
We investigate up to which extend the kinematic setting of loop quantum gravity can be fit into a di...
A Relational Quantum Theory Incorporating Gravity developed the concept of quantum covariance and ar...
Quantum General Relativity (QGR), sometimes called Loop Quantum Gravity, has matured over the past f...
A quantum physical projector is proposed for generally covariant theories which are derivable from a...
8 pages, 3 figuresInternational audienceNew progress in loop gravity has lead to a simple model of '...
This thesis reports a study of the quantization of generally covariant and nonlinear field theories....
4-page review for Scientifica ActaThe path-integral approach to cosmology consists in the computatio...
Our current understanding of the physical world is based on the framework of the quantum theory of f...
Quantum gravity is among the most fascinating problems in physics. It modifies our understanding of ...
We propose in this paper a quantization scheme for real Klein-Gordon field in de Sitter spacetime. O...
General relativity is a generally covariant, locally Lorentz covariant theory of two transverse, tra...
Dans ce manuscrit, nous présentons un mise en place et calcul d'un observable physique dans le cadre...
A quantum field theory formalism is reviewed that leads to a self-consistent, finite quantum gravity...
An approach to quantum gravity and cosmology is proposed based on a synthesis of four elements: 1) t...
This paper is an extended version of the talk given at 19th Texas Symposium of Relativistic Astrophy...
We investigate up to which extend the kinematic setting of loop quantum gravity can be fit into a di...
A Relational Quantum Theory Incorporating Gravity developed the concept of quantum covariance and ar...
Quantum General Relativity (QGR), sometimes called Loop Quantum Gravity, has matured over the past f...
A quantum physical projector is proposed for generally covariant theories which are derivable from a...
8 pages, 3 figuresInternational audienceNew progress in loop gravity has lead to a simple model of '...
This thesis reports a study of the quantization of generally covariant and nonlinear field theories....
4-page review for Scientifica ActaThe path-integral approach to cosmology consists in the computatio...
Our current understanding of the physical world is based on the framework of the quantum theory of f...
Quantum gravity is among the most fascinating problems in physics. It modifies our understanding of ...
We propose in this paper a quantization scheme for real Klein-Gordon field in de Sitter spacetime. O...
General relativity is a generally covariant, locally Lorentz covariant theory of two transverse, tra...
Dans ce manuscrit, nous présentons un mise en place et calcul d'un observable physique dans le cadre...
A quantum field theory formalism is reviewed that leads to a self-consistent, finite quantum gravity...
An approach to quantum gravity and cosmology is proposed based on a synthesis of four elements: 1) t...
This paper is an extended version of the talk given at 19th Texas Symposium of Relativistic Astrophy...
We investigate up to which extend the kinematic setting of loop quantum gravity can be fit into a di...
A Relational Quantum Theory Incorporating Gravity developed the concept of quantum covariance and ar...
Quantum General Relativity (QGR), sometimes called Loop Quantum Gravity, has matured over the past f...