Perturbed precessing ellipses as the building blocks of spiral arms in a barred galaxy with two pattern speeds
M. Harsoula, C.Efthymiopoulos, G. Contopoulos, A. C. Tzemos

TL;DR
This paper proposes an alternative model for spiral arm formation in barred galaxies with two pattern speeds, focusing on perturbed precessing ellipses as the building blocks, contrasting with the manifold theory.
Contribution
It introduces a new scenario where fast-rotating bars perturb spiral potential, transforming stable elliptical orbits into quasiperiodic orbits that form spiral arms.
Findings
Perturbed precessing ellipses can generate spiral density waves.
The model explains spiral arms as superpositions of slightly perturbed elliptical orbits.
Contrasts with manifold theory by emphasizing perturbation of elliptical orbits.
Abstract
Observations and simulations of barred spiral galaxies have shown that, in general, the spiral arms rotate at a different pattern speed to that of the bar. The main conclusion from the bibliography is that the bar rotates faster than the spiral arms with a double or even a triple value of angular velocity. The theory that prevails in explaining the formation of the spiral arms in the case of a barred spiral galaxy with two pattern speeds is the manifold theory, where the orbits that support the spiral density wave are chaotic, and are related to the manifolds emanating from the Lagrangian points L_1 and L_2 at the end of the bar. In the present study, we consider an alternative scenario in the case where the bar rotates fast enough in comparison with the spiral arms and the bar potential can be considered as a perturbation of the spiral potential. In this case, the stable elliptical…
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Taxonomy
TopicsQuantum chaos and dynamical systems · Galaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research
