Orbital support and evolution of flat profiles of bars (shoulders)
arXiv:2303.04828 · doi:10.3847/1538-4357/ace976
Abstract
Many barred galaxies exhibit upturns (shoulders) in their bar major-axis density profile. Simulation studies have suggested that shoulders are supported by looped orbits, occur in growing bars, and can appear after bar-buckling. We investigate the orbital support and evolution of shoulders via frequency analyses of orbits in simulations. We confirm that looped orbits are shoulder-supporting, and can remain so, to a lesser extent, after being vertically thickened. We show that looped orbits appear at the resonance (analogous to the classical Inner Lindblad Resonance, and here called ILR) with vertical-to-radial frequency ratios (vertically warm orbits). Cool orbits at the ILR (those with ) are vertically thin and have no loops, contributing negligibly to shoulders. As bars slow and thicken, either secularly or by buckling, they populate warm orbits at the ILR. Further thickening carries these orbits towards crossing the vertical ILR [vILR, ], where they convert in-plane to vertical motion, become chaotic, kinematically hotter and less shoulder-supporting. Hence, persistent shoulders require bars to trap new stars, consistent with the need for a growing bar. Since buckling speeds up trapping on warm orbits at the ILR, it can be followed by shoulder formation, as seen in simulations. This sequence supports the recent observational finding that shoulders likely precede the emergence of BP-bulges. The python module for the frequency analysis, naif, is made available.
Published in ApJ; A few additional figures in response to referee's request. Conclusions unchanged
References in corpus (21)
- Array Programming with NumPy
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- Dynamics of Barred Galaxies
- A Near-Infrared Study of 2MASS Bars in Local Galaxies: An Anchor for High Redshift Studies
- The Dependence of Bar Frequency on Galaxy Mass, Colour, and Gas Content -- and Angular Resolution -- in the Local Universe
- Galaxy Zoo: Secular evolution of barred galaxies from structural decomposition of multi-band images
- Unravelling the mystery of the M31 bar
- The formation of stellar nuclear discs in bar-induced gas inflows
- Peanuts, brezels and bananas: food for thought on the orbital structure of the Galactic bulge
- Resonances in Barred Galaxies
- Near-Infrared Surface Photometry of a Sample of Barred Galaxies
- Three Mechanisms for Bar Thickening
- Dynamically constraining the length of the Milky Way bar
- The phase-space of boxy-peanut and X-shaped bulges in galaxies II. The relation between face-on and edge-on boxiness
- The Mass Profile and Shape of Bars in the Spitzer Survey of Stellar Structure in Galaxies (S4G): Search for an Age Indicator for Bars
- The orbital content of bars: The origin of 'non-x1-tree', bar-supporting orbits
- Boxy Orbital Structures in Rotating Bar Models
- The secular growth of bars revealed by flat (peak + shoulders) density profiles
- The discreteness-driven relaxation of collisionless gravitating systems: entropy evolution in external potentials, N-dependence and the role of chaos
- The Profiles of Bars in Spiral Galaxies
- Orbit evolution in growing stellar bars: Bar-supporting orbits at the vertical ILR region
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