In this thesis we take Einstein theory in dimension four seriously, and explore the special aspects of gravity in this number of dimension. Among the many surprising features in dimension four, one of them is the possibility of `Chiral formulations of gravity' - they are surprising as they typically do not rely on a metric. Another is the existence of the Twistor correspondence. The Chiral and Twistor formulations might seems different in nature. In the first part of this thesis we demonstrate that they are in fact closely related. In particular we give a new proof for Penrose's `non-linear graviton theorem' that relies on the geometry of SU(2)-connections only (rather than on metric). In the second part of this thesis we describe partial r...
We present a new unitary model of gravity in three dimensions containing a particular combination of...
In this thesis we present a modification of Yang-Mills and Gravity theories both written in terms of...
The thesis is split into three parts: In the first part we describe the Geometric Trinity of Gravity...
In this thesis we take Einstein theory in dimension four seriously, and explore the special aspects ...
In this thesis we take Einstein theory in dimension four seriously, and explore the special aspects ...
We show that 3D gravity, in its pure connection formulation, admits a natural 6D interpretation. The...
DescriptionContentsResourcesCoursesAbout the Authors This monograph describes the different formulat...
We consider a certain theory of 3-forms in 7 dimensions, and study its dimensional reduction to 4D, ...
I review some ways in which spacetime dimensionality enters explicitly in gravitation. In particular...
For many years after Penrose's foundational 1967 paper, twistor theory progressed slowly, in part be...
This thesis considers various aspects of general relativity in more than four spacetime dimensions. ...
We introduce a notion of topological M-theory and argue that it provides a unification of form theor...
Twistor theory is the remarkable mathematical framework that was discovered by Roger Penrose in the ...
Abstract: We introduce a notion of topological M-theory and argue that it provides a unification of ...
Since antiquity, from Euclid of Alexandria to Galileo Galilei to Immanuel Kant to Hermann Minkowksi ...
We present a new unitary model of gravity in three dimensions containing a particular combination of...
In this thesis we present a modification of Yang-Mills and Gravity theories both written in terms of...
The thesis is split into three parts: In the first part we describe the Geometric Trinity of Gravity...
In this thesis we take Einstein theory in dimension four seriously, and explore the special aspects ...
In this thesis we take Einstein theory in dimension four seriously, and explore the special aspects ...
We show that 3D gravity, in its pure connection formulation, admits a natural 6D interpretation. The...
DescriptionContentsResourcesCoursesAbout the Authors This monograph describes the different formulat...
We consider a certain theory of 3-forms in 7 dimensions, and study its dimensional reduction to 4D, ...
I review some ways in which spacetime dimensionality enters explicitly in gravitation. In particular...
For many years after Penrose's foundational 1967 paper, twistor theory progressed slowly, in part be...
This thesis considers various aspects of general relativity in more than four spacetime dimensions. ...
We introduce a notion of topological M-theory and argue that it provides a unification of form theor...
Twistor theory is the remarkable mathematical framework that was discovered by Roger Penrose in the ...
Abstract: We introduce a notion of topological M-theory and argue that it provides a unification of ...
Since antiquity, from Euclid of Alexandria to Galileo Galilei to Immanuel Kant to Hermann Minkowksi ...
We present a new unitary model of gravity in three dimensions containing a particular combination of...
In this thesis we present a modification of Yang-Mills and Gravity theories both written in terms of...
The thesis is split into three parts: In the first part we describe the Geometric Trinity of Gravity...