arXiv Analytics

Sign in

arXiv:1112.1013 [astro-ph.GA]AbstractReferencesReviewsResources

Disks controlling chaos in a 3D dynamical model for elliptical galaxies

Euaggelos E. Zotos

Published 2011-12-05Version 1

A 3D dynamical model with a quasi-homogeneous core and a disk component is used for the chaos control in the central parts of elliptical galaxy. Numerical experiments in the 2D system show a very complicated phase plane with a large chaotic sea, considerable sticky layers and a large number of islands, produced by secondary resonances. When the mass of the disk increases, the chaotic regions decrease gradually, and, finally, a new phase plane with only regular orbits appears. This evolution indicates that disks in elliptical galaxies can act as the chaos controllers. Starting from the results obtained in the 2D system, we locate the regions in the phase space of the 3D system, producing regular and chaotic orbits. For this we introduce and use a new dynamical parameter, the S(w) spectrum, which proves to be useful as a fast indicator and allows us to distinguish the regular motion from chaos in the 3D potentials. Other methods for detecting chaos are also discussed.

Comments: Accepted for publication in Baltic Astronomy journal
Journal: Baltic Astronomy, 2011, 20, 77-90
Categories: astro-ph.GA, nlin.CD
Related articles: Most relevant | Search more
arXiv:1009.3380 [astro-ph.GA] (Published 2010-09-17)
The outer halos of elliptical galaxies
arXiv:2301.07984 [astro-ph.GA] (Published 2023-01-19)
Three New Models of Layered Inhomogeneous Elliptical Galaxies
arXiv:2109.10929 [astro-ph.GA] (Published 2021-09-22)
The inner density profile of an elliptical galaxy at z=1.15 from gravitational lensing