Investigating the origin of the Milky Way streams. A revised look at their orbital pole distribution in light of precession effects
arXiv:2508.05733 · doi:10.1051/0004-6361/202451179
Abstract
Stellar streams around the Milky Way (MW) can provide valuable insights into its history and substructure formation. Previous studies have suggested that several MW streams could have an origin related to that of the disc of satellite galaxies (DoS) and the young halo globular clusters of the MW, given that many of these structures present a similar orbital pole orientation. In this work we test the validity of this hypothesis by revising the orbital pole distribution of the MW streams with the latest stream dataset (galstreams). For a sample of 91 streams at Galactocentric distances of kpc we find that the pole distribution has no preferred orbital direction. However, as we subtract the streams closer to the Galactic centre, by imposing several lower distance cuts, we find that the larger the Galactocentric distance of the streams, the higher the fraction of stream poles pointing in a direction similar to the DoS. This trend could be explained if the stream pole distribution were originally anisotropic, but precession effects displaced the orbital poles of the streams closer to the Galactic centre. From the pole distribution and the estimated precession rates of the streams in the sample, we infer that the streams nearer the Galactic centre are indeed quite likely to be affected by precession. Finally, we corroborate with hydrodynamical simulations that, even in a scenario in which the MW substructures had a common origin, an overdensity in their orbital pole direction cannot be appreciated until the selected sample also includes material at kpc.
12 pages, 7 figures, 5 tables. Accepted for publication in A&A
References in corpus (29)
- Galaxies as simple dynamical systems: observational data disfavor dark matter and stochastic star formation
- The spatial distribution of the Milky Way and Andromeda satellite galaxies
- Charting the Galactic acceleration field I. A search for stellar streams with Gaia DR2 and EDR3 with follow-up from ESPaDOnS and UVES
- From Tidal Dwarf Galaxies to Satellite Galaxies
- THINGS about MOND
- The Milky Way's Disk of Classical Satellite Galaxies in Light of Gaia DR2
- A thousand shadows of Andromeda: rotating planes of satellites in the Millennium-II cosmological simulation
- Detection of the Keplerian decline in the Milky Way rotation curve
- galstreams: A Library of Milky Way Stellar Stream Footprints and Tracks
- : The Orbital and Chemical Properties of One Dozen Stellar Streams
- Phantom of RAMSES (POR): A new Milgromian dynamics N-body code
- Orbital Clustering Identifies the Origins of Galactic Stellar Streams
- Broken into Pieces: ATLAS and Aliqa Uma as One Single Stream
- Mapping the Milky Way Disk with Gaia DR3: 3D extended kinematic maps and rotation curve to kpc
- The coherent motion of Cen A dwarf satellite galaxies remains a challenge for CDM cosmology
- Probing the nature of dark matter with accreted globular cluster streams
- Evolution of spiral galaxies in modified gravity: II- Gas dynamics
- The Vast Polar Structure of the Milky Way Attains New Members
- The distribution of globular clusters in kinematic spaces does not trace the accretion history of the host galaxy
- The Complexity of the Cetus Stream Unveiled from the Fusion of STREAMFINDER and StarGO
- 3D hydrodynamic simulations for the formation of the Local Group satellite planes
- Mass models of the Milky Way and estimation of its mass from the GAIA DR3 data-set
- The Phantom of RAMSES user guide for galaxy simulations using Milgromian and Newtonian gravity
- The Cetus-Palca stream: A disrupted small dwarf galaxy. A prequel to the science possible with WEAVE with precise spectro-photometric distances
- A new resonance-like feature in the outer disc of the Milky Way
- Open star clusters and their asymmetrical tidal tails
- A slightly oblate dark matter halo revealed by a retrograde precessing Galactic disk warp
- Satellite group infall into the Milky Way: exploring the Crater-Leo case with new HST proper motions
- Stellar streams and dark substructure: the diffusion regime