Stirring Things Up: Bar-induced substructures in the stellar halo of a cosmological Milky Way analogue
arXiv:2601.14409 · doi:10.1093/mnras/stag841
Abstract
The stellar halo of the Milky Way contains the remnants of past accretion events, which could be detectable as substructures in the classical integrals of motion space, such as energy and angular momentum (E-Lz). However, our galaxy also contains a non-axisymmetric stellar bar, which traps stars in resonant orbits, leading to substructures in phase-space. Using a high-resolution magneto-hydrodynamic cosmological zoom-in simulation of a Milky Way analogue, we explore the connection between the bar and the accreted stellar halo. We find that the bar induces prominent substructures, or "ridges", in E-Lz, caused by the resonances. The most pronounced of these is caused by the corotation and the retrograde 1:1 resonances, with weaker ridges visible due to the prograde 1:1 and outer Lindblad resonance. The ridges are present across much of the stellar halo, with variations in radius due to the morphology of different orbital families. We explore the scattering of orbits at the resonances, finding that stars trapped at the 1:1 retrograde resonance become more circularised and have more negative angular momentum. Additionally, stars can move between the corotation and retrograde 1:1 families, thus alternating between prograde and retrograde motion. Due to these scatterings and the pre-existing metallicity gradients in the accreted population, the bar-induced substructures have distinct metallicities compared to stars in the surrounding phase-space. Our results suggest the need for caution when searching the Milky Way stellar halo for accreted substructures in both integral of motions and chemical spaces, since these can be induced by internal perturbations.
17 pages, 13 figures, 1 table, submitted to MNRAS
References in corpus (27)
- The Gaia mission
- Gaia Data Release 3: Summary of the content and survey properties
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- The Auriga Project: the properties and formation mechanisms of disc galaxies across cosmic time
- A Near-Infrared Study of 2MASS Bars in Local Galaxies: An Anchor for High Redshift Studies
- Evidence from the H3 Survey that the Stellar Halo is Entirely Comprised of Substructure
- Dynamical modelling of the Galactic bulge and bar: the Milky Way's bar pattern speed, stellar, and dark matter mass distribution
- Kraken reveals itself -- the merger history of the Milky Way reconstructed with the E-MOSAICS simulations
- Evidence from APOGEE for the presence of a major building block of the halo buried in the inner Galaxy
- Overview of the DESI Milky Way Survey
- Satellites of Simulated Galaxies: survival, merging, and their relation to the dark and stellar halos
- Fluctuations in galactic bar parameters due to bar-spiral interaction
- Tree-ring structure of Galactic bar resonance
- On the ridges, undulations & streams in Gaia DR2: Linking the topography of phase-space to the orbital structure of an N-body bar
- Revisiting the tension between fast bars and the CDM paradigm
- Trapped orbits and solar-neighbourhood kinematics
- Stellar halo substructure generated by bar resonances
- Dynamically constraining the length of the Milky Way bar
- The stellar metallicity gradients of Local Group dwarf galaxies
- An ever-present snail shell triggered by a dark matter wake
- Radial halo substructure in harmony with the Galactic bar
- Orbital support and evolution of flat profiles of bars (shoulders)
- Exploring the diversity and similarity of radially anisotropic Milky Way-like stellar haloes: implications for disrupted dwarf galaxy searches
- Bar-driven dispersal of Galactic substructure
- On the chaos induced by the Galactic bar on the orbits of nearby halo stars
- Quantifying the intrinsic variability due to randomness of the Auriga galaxy formation model
- From order to chaos: the blurred out metallicity gradient of the Gaia-Enceladus/Sausage progenitor