We give a spinorial set of Hamiltonian variables for General Relativity in any dimension greater than 2. This approach involves a study of the algebraic properties of spinors in higher dimension, and of the elimination of second-class constraints from the Hamiltonian theory. In four dimensions, when restricted to the positive spin-bundle, these variables reduce to the standard Ashtekar variables. In higher dimensions, the theory can either be reduced to a spinorial version of the ADM formalism, or can be left in a more general form which seems useful for the investigation of some spinorial problems such as Riemannian manifolds with reduced holonomy group. In dimensions $0 ____pmod 4$, the theory may be recast solely in terms of structures o...
This book contains a systematic exposition of the theory of spinors in finite-dimensional Euclidean ...
This paper proposes a description of the notion of spinor by restricting attention on its definition...
We propose that a unified description of all interactions could be based on a higher-dimensional the...
We give a spinorial set of Hamiltonian variables for General Relativity in any dimension greater tha...
We give a spinorial set of Hamiltonian variables for General Relativity in any dimension greater tha...
Abstract: In General Relativity in Hamiltonian form, change has seemed to be missing, defined only a...
International audienceMinimally modified gravity theories are modifications of general relativity wi...
Without using the customary Clifford algebras frequently studied in connection with the representati...
The aim of this thesis is to present a synthesis, using standard techniques of algebra and of differ...
We develop in a companion article the kinematics of three-dimensional loop quantum gravity in Euclid...
This paper aims at explaining that the key to understanding quantum mechanics (QM) is a perfect geom...
This paper presents a Hamiltonian formulation of spinfoam-gravity, which leads to a straight-forward...
International audienceThe book aims to give an elementary and comprehensive introduction to Spin Geo...
The four fundamental interactions can be described with modern geometry. Gauge theory says that the ...
This book contains a systematic exposition of the theory of spinors in finite-dimensional Euclidean ...
This paper proposes a description of the notion of spinor by restricting attention on its definition...
We propose that a unified description of all interactions could be based on a higher-dimensional the...
We give a spinorial set of Hamiltonian variables for General Relativity in any dimension greater tha...
We give a spinorial set of Hamiltonian variables for General Relativity in any dimension greater tha...
Abstract: In General Relativity in Hamiltonian form, change has seemed to be missing, defined only a...
International audienceMinimally modified gravity theories are modifications of general relativity wi...
Without using the customary Clifford algebras frequently studied in connection with the representati...
The aim of this thesis is to present a synthesis, using standard techniques of algebra and of differ...
We develop in a companion article the kinematics of three-dimensional loop quantum gravity in Euclid...
This paper aims at explaining that the key to understanding quantum mechanics (QM) is a perfect geom...
This paper presents a Hamiltonian formulation of spinfoam-gravity, which leads to a straight-forward...
International audienceThe book aims to give an elementary and comprehensive introduction to Spin Geo...
The four fundamental interactions can be described with modern geometry. Gauge theory says that the ...
This book contains a systematic exposition of the theory of spinors in finite-dimensional Euclidean ...
This paper proposes a description of the notion of spinor by restricting attention on its definition...
We propose that a unified description of all interactions could be based on a higher-dimensional the...