Characterization of Orbits in Bars in Disc Galaxies Using Fourier Frequencies

Abstract Bars are among the most prominent dynamical structures in disc galaxies, yet their long-term evolution and the orbital families that sustain them remain only partially understood. In this work, we introduce a new methodology based on frozen potentials combined with Fourier analysis of particle trajectories to identify regular and sticky orbits in self-consistent N-body simulations. This approach allows us to isolate particles belonging to the x1 family, directly associated with the bar, and the x2 family, linked to a secondary perpendicular structure. Tracking these orbits across multiple snapshots enables us to quantify the time evolution of key bar properties, including its mass fraction, semi-axes, and density profile. Compared with established used diagnostics, our method provides the closest match to the temporal behaviour of the Fourier bar-strength parameter A2, while offering a direct dynamical interpretation and full three-dimensional characterization that Fourier-based approaches cannot provide. Our analysis further reveals that the indices nx, ny, and nz describing the bar density distribution are anisotropic and rarely equal to the canonical n = 2 assumed in Ferrers profiles, highlighting the limitations of standard analytical approximations. We also find strong correlations between bar growth, orbital chaoticity, and angular momentum redistribution, with the bar acting both as a sink and as a driver of angular momentum transfer. A comparison between the two analysed models shows that rapidly forming bars are weaker and less stable than those that grow more gradually. Altogether, our methodology provides a robust framework for linking orbital structure to the dynamical evolution of barred galaxies.

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Publication Details

Journal
Monthly Notices of the Royal Astronomical Society
Published
2026-10-06
DOI
https://doi.org/10.1093/mnras/stag1734
Primary Topic
Galaxies: Formation, Evolution, Phenomena
Type
article
Field-Weighted Citation Impact
0.00

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article

Characterization of Orbits in Bars in Disc Galaxies Using Fourier Frequencies

I. Puerari, A. Silva-Castro, D. Valencia-Enríquez
Monthly Notices of the Royal Astronomical Society
Galaxies: Formation, Evolution, Phenomena
article

Characterization of Orbits in Bars in Disc Galaxies Using Fourier Frequencies

I. Puerari, A. Silva-Castro, D. Valencia-Enríquez
article en

Abstract

Abstract Bars are among the most prominent dynamical structures in disc galaxies, yet their long-term evolution and the orbital families that sustain them remain only partially understood. In this work, we introduce a new methodology based on frozen potentials combined with Fourier analysis of particle trajectories to identify regular and sticky orbits in self-consistent N-body simulations. This approach allows us to isolate particles belonging to the x1 family, directly associated with the bar, and the x2 family, linked to a secondary perpendicular structure. Tracking these orbits across multiple snapshots enables us to quantify the time evolution of key bar properties, including its mass fraction, semi-axes, and density profile. Compared with established used diagnostics, our method provides the closest match to the temporal behaviour of the Fourier bar-strength parameter A2, while offering a direct dynamical interpretation and full three-dimensional characterization that Fourier-based approaches cannot provide. Our analysis further reveals that the indices nx, ny, and nz describing the bar density distribution are anisotropic and rarely equal to the canonical n = 2 assumed in Ferrers profiles, highlighting the limitations of standard analytical approximations. We also find strong correlations between bar growth, orbital chaoticity, and angular momentum redistribution, with the bar acting both as a sink and as a driver of angular momentum transfer. A comparison between the two analysed models shows that rapidly forming bars are weaker and less stable than those that grow more gradually. Altogether, our methodology provides a robust framework for linking orbital structure to the dynamical evolution of barred galaxies.

Monthly Notices of the Royal Astronomical Society
National Institute of Astrophysics, Optics and Electronics (MX), Universidad Mariana (CO)
Consejo Nacional de Ciencia y Tecnología, Instituto Nacional de Astrofísica, Óptica y Electrónica
Openalex Percentile: Top 20%
Galaxies: Formation, Evolution, Phenomena
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Characterization of Orbits in Bars in Disc Galaxies Using Fourier Frequencies — I. Puerari, A. Silva-Castro, et al. · Monthly Notices of the Royal Astronomical Society (2026) | TGRS Research Map | TGRS