On the Mathematical Foundations of Causal Fermion Systems in Minkowski Space

Author:

Oppio MarcoORCID

Abstract

AbstractThe emergence of the concept of a causal fermion system is revisited and further investigated for the vacuum Dirac equation in Minkowski space. After a brief recap of the Dirac equation and its solution space, in order to allow for the effects of a possibly nonstandard structure of spacetime at the Planck scale, a regularization by a smooth cutoff in momentum space is introduced, and its properties are discussed. Given an ensemble of solutions, we recall the construction of a local correlation function, which realizes spacetime in terms of operators. It is shown in various situations that the local correlation function maps spacetime points to operators of maximal rank and that it is closed and homeomorphic onto its image. It is inferred that the corresponding causal fermion systems are regular and have a smooth manifold structure. The cases considered include a Dirac sea vacuum and systems involving a finite number of particles and antiparticles.

Funder

Universität Regensburg

Publisher

Springer Science and Business Media LLC

Subject

Mathematical Physics,Nuclear and High Energy Physics,Statistical and Nonlinear Physics

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Existence of minimizers for causal variational principles on compact subsets of momentum space in the homogeneous setting;Calculus of Variations and Partial Differential Equations;2022-05-05

2. A notion of entropy for causal fermion systems;Letters in Mathematical Physics;2021-10

3. The linear dynamics of wave functions in causal fermion systems;Journal of Differential Equations;2021-08

4. Banach manifold structure and infinite-dimensional analysis for causal fermion systems;Annals of Global Analysis and Geometry;2021-05-31

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