Frequencies, chaos and resonances: a study of orbital parameters of nearby thick disc and halo stars
arXiv:2009.04849 · doi:10.1051/0004-6361/202039390
Abstract
We study the distribution of nearby thick disc and halo stars in subspaces defined by their characteristic orbital parameters. Our aim is to establish the origin of the structure reported in particular, in the space. To this end, we compute the orbital parameters and frequencies of stars for a generic and for a Stäckel Milky Way potential. We find that for both the thick disc and halo populations very similar prominent substructures are apparent for the generic Galactic potential, while no substructure is seen for the Stäckel model. This indicates that the origin of these features is not merger-related, but due to non-integrability of the generic potential. This conclusion is strengthened by our frequency analysis of the orbits of stars, which reveals the presence of prominent resonances, with of the halo stars associated to resonance families. In fact, the stars in resonances define the substructures seen in the spaces of characteristic orbital parameters. Furthermore, we find that some stars in our sample and in debris streams are on the same resonance as the Sagittarius dwarf, suggesting this system has also influenced the distribution of stars in the Galactic thick disc and halo components. Our study constitutes a step towards disentangling the imprint of merger debris from substructures driven by internal dynamics. Given their prominence, these resonant-driven overdensities could potentially be useful to constrain the exact form of the Galactic potential.
12 pages, 11 figures, submitted to A&A
References in corpus (15)
- galpy: A Python Library for Galactic Dynamics
- The mass distribution and gravitational potential of the Milky Way
- Evidence for Two Early Accretion Events That Built the Milky Way Stellar Halo
- Evidence from the H3 Survey that the Stellar Halo is Entirely Comprised of Substructure
- Tango for three: Sagittarius, LMC, and the Milky Way
- Constraining the Galaxy's dark halo with RAVE stars
- A box full of chocolates: The rich structure of the nearby stellar halo revealed by Gaia and RAVE
- Halo Substructure in the SDSS-Gaia Catalogue : Streams and Clumps
- The fine-grained phase-space structure of Cold Dark Matter halos
- Reflex motion in the Milky Way stellar halo resulting from the Large Magellanic Cloud infall
- Tracing the Hercules stream with Gaia and LAMOST: new evidence for a fast bar in the Milky Way
- Quantifying the Stellar Halo's Response to the LMC's Infall with Spherical Harmonics
- The tale of the tail -- disentangling the high transverse velocity stars in Gaia DR2
- Orbital classification in an N-body bar
- The imprints of the Galactic bar on the thick disk with RAVE
Cited by in corpus (7)
- The GALAH Survey: Chemical tagging and chrono-chemodynamics of accreted halo stars with GALAH+ DR3 and eDR3
- Dynamically constraining the length of the Milky Way bar
- The stellar halo in Local Group Hestia simulations I. The in-situ component and the effect of mergers
- Phase-space Properties and Chemistry of the Sagittarius Stellar Stream Down to the Extremely Metal-poor () Regime
- Candidate Members of the VMP/EMP Disk System of the Galaxy from the SkyMapper and SAGES Surveys
- The global structure of the Milky Way's stellar halo based on the orbits of local metal-poor stars
- The Spheroidal Bulge of the Milky Way: Chemodynamically Distinct from the Inner-Thick Disc and Bar