Manifold dynamics and orbital properties in a two-dimensional galactic model

Fuente: arXiv
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Autores principales: Theron, Dylan, Skokos, Charalampos
Formato: Preprint
Publicado: 2025
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author Theron, Dylan
Skokos, Charalampos
author_facet Theron, Dylan
Skokos, Charalampos
contents We numerically investigate the orbital dynamics of a two-dimensional galactic model, emphasizing the influence of stable and unstable manifolds on the evolution of orbits. In our analysis we use evaluations of the system's Lagrangian descriptors to reveal the structure and location of manifolds. In addition, we perform extensive computations of the forward and backward in time evolution of ensembles of orbits, which allow us to study the future and past dynamics of the model by constructing its so-called origin-fate maps. Focusing on the properties of the escape of orbits from the central regions of the model's configuration space, we analyze various aspects of the orbits' evolutions, like the time an orbit needs to escape from the central region, the total time it spends at the exterior areas of the galaxy, as well as the number of its escapes and reentries from and to the central region. Furthermore, we follow the past and future evolution of orbits keeping track of the regions from which they leave the central parts of the galaxy, and relate different orbital behaviors with the enhancement of specific morphological features in the system's configuration space. Our results indicate that the stable (unstable) manifolds mainly influence the orbital characteristics of the model in the future (past).
format Preprint
id arxiv_https___arxiv_org_abs_2505_10901
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Manifold dynamics and orbital properties in a two-dimensional galactic model
Theron, Dylan
Skokos, Charalampos
Chaotic Dynamics
Astrophysics of Galaxies
We numerically investigate the orbital dynamics of a two-dimensional galactic model, emphasizing the influence of stable and unstable manifolds on the evolution of orbits. In our analysis we use evaluations of the system's Lagrangian descriptors to reveal the structure and location of manifolds. In addition, we perform extensive computations of the forward and backward in time evolution of ensembles of orbits, which allow us to study the future and past dynamics of the model by constructing its so-called origin-fate maps. Focusing on the properties of the escape of orbits from the central regions of the model's configuration space, we analyze various aspects of the orbits' evolutions, like the time an orbit needs to escape from the central region, the total time it spends at the exterior areas of the galaxy, as well as the number of its escapes and reentries from and to the central region. Furthermore, we follow the past and future evolution of orbits keeping track of the regions from which they leave the central parts of the galaxy, and relate different orbital behaviors with the enhancement of specific morphological features in the system's configuration space. Our results indicate that the stable (unstable) manifolds mainly influence the orbital characteristics of the model in the future (past).
title Manifold dynamics and orbital properties in a two-dimensional galactic model
topic Chaotic Dynamics
Astrophysics of Galaxies
url https://arxiv.org/abs/2505.10901