Towards a Floer theory for Mars I -- Twisted Zeeman systems

Fuente: arXiv
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Main Authors: Frauenfelder, Urs, Weber, Joa
Format: Preprint
Published: 2026
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_version_ 1866914622022352896
author Frauenfelder, Urs
Weber, Joa
author_facet Frauenfelder, Urs
Weber, Joa
contents In this article we study periodic orbits of an electron attracted by a proton subject to Lorentz, electric, and Euler forces where each of them is allowed to depend periodically on time. This setup is motivated by the elliptic restricted three-body-problem where the Lorentz force corresponds to Coriolis force, the Coulomb force is replaced by the gravitational force, and the electric force of an external source is a combination of centrifugal forces and gravitational forces of other bodies. This is a singular version of a Euler-Hamilton system as discussed in [FW26b]. The singularity is due to collisions of the electron with the proton, respectively of two masses. Due to the possibility of collisions this problem has to be regularized. We show how periodic collisional solutions of this problem can be detected variationally in a non-local Lagrangian setup as well as in a non-local Hamiltonian setup.
format Preprint
id arxiv_https___arxiv_org_abs_2606_01749
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Towards a Floer theory for Mars I -- Twisted Zeeman systems
Frauenfelder, Urs
Weber, Joa
Symplectic Geometry
Mathematical Physics
Analysis of PDEs
Dynamical Systems
70F16 70F07 70Hxx 70H12 34K13 37C83
In this article we study periodic orbits of an electron attracted by a proton subject to Lorentz, electric, and Euler forces where each of them is allowed to depend periodically on time. This setup is motivated by the elliptic restricted three-body-problem where the Lorentz force corresponds to Coriolis force, the Coulomb force is replaced by the gravitational force, and the electric force of an external source is a combination of centrifugal forces and gravitational forces of other bodies. This is a singular version of a Euler-Hamilton system as discussed in [FW26b]. The singularity is due to collisions of the electron with the proton, respectively of two masses. Due to the possibility of collisions this problem has to be regularized. We show how periodic collisional solutions of this problem can be detected variationally in a non-local Lagrangian setup as well as in a non-local Hamiltonian setup.
title Towards a Floer theory for Mars I -- Twisted Zeeman systems
topic Symplectic Geometry
Mathematical Physics
Analysis of PDEs
Dynamical Systems
70F16 70F07 70Hxx 70H12 34K13 37C83
url https://arxiv.org/abs/2606.01749