We propose causal fermion systems and Riemannian fermion systems as a framework for describing spinors on singular spaces. The underlying topological structures are introduced and analyzed. The connection to the spin condition in differential topology is worked out. The constructions are illustrated by many simple examples like the Euclidean plane, the two-dimensional Minkowski space, a conical singularity, a lattice system as well as the curvature singularity of the Schwarzschild space-time
We examine some of the subtleties inherent in formulating a theory of spinors on a manifold with a s...
The description of fermions on curved manifolds or in curvilinear coordinates usually requires a vie...
Relativistic spin-(1/2) particles in curved spacetime are naturally described by Dirac theory, which...
We propose causal fermion systems and Riemannian fermion systems as a framework for describing spino...
Causal fermion systems and Riemannian fermion systems are proposed as a framework for describing non...
Causal fermion systems are introduced as a general mathematical framework for formulating relativist...
The theory of causal fermion systems is an approach to describe fundamental physics. We here introdu...
We propose a formulation of a Lorentzian quantum geometry based on the framework of causal fermion s...
The theory of causal fermion systems is an approach to describe fundamental physics. We here introdu...
The emergence of the concept of a causal fermion system is revisited and further investigated for th...
Abstract A systematic study of the spinor representation by means of the fermionic physical space is...
At first we introduce the space-time manifold and we compare some aspects of Riemannian and Lorentz...
AbstractThe structures of the spin and form bundles over the universal cosmos M̃, and their relation...
This book contains a systematic exposition of the theory of spinors in finite-dimensional Euclidean ...
International audienceThe book aims to give an elementary and comprehensive introduction to Spin Geo...
We examine some of the subtleties inherent in formulating a theory of spinors on a manifold with a s...
The description of fermions on curved manifolds or in curvilinear coordinates usually requires a vie...
Relativistic spin-(1/2) particles in curved spacetime are naturally described by Dirac theory, which...
We propose causal fermion systems and Riemannian fermion systems as a framework for describing spino...
Causal fermion systems and Riemannian fermion systems are proposed as a framework for describing non...
Causal fermion systems are introduced as a general mathematical framework for formulating relativist...
The theory of causal fermion systems is an approach to describe fundamental physics. We here introdu...
We propose a formulation of a Lorentzian quantum geometry based on the framework of causal fermion s...
The theory of causal fermion systems is an approach to describe fundamental physics. We here introdu...
The emergence of the concept of a causal fermion system is revisited and further investigated for th...
Abstract A systematic study of the spinor representation by means of the fermionic physical space is...
At first we introduce the space-time manifold and we compare some aspects of Riemannian and Lorentz...
AbstractThe structures of the spin and form bundles over the universal cosmos M̃, and their relation...
This book contains a systematic exposition of the theory of spinors in finite-dimensional Euclidean ...
International audienceThe book aims to give an elementary and comprehensive introduction to Spin Geo...
We examine some of the subtleties inherent in formulating a theory of spinors on a manifold with a s...
The description of fermions on curved manifolds or in curvilinear coordinates usually requires a vie...
Relativistic spin-(1/2) particles in curved spacetime are naturally described by Dirac theory, which...