The long-term stability of the Vast Polar Structure and its connection to a possible previous passage of the LMC
arXiv:2507.18685 · doi:10.1051/0004-6361/202556585
Abstract
The Vast Polar Structure (VPOS) is a thin, planar arrangement of co-orbiting dwarf galaxies, nearly perpendicular to the Milky Way (MW) disc. In this work we investigate the persistence and stability of the VPOS over time. We identify VPOS member galaxies and integrate their orbits over the past 5 Gyr using time evolving gravitational potentials that account for the mutual interaction between the MW and the Large Magellanic Cloud (LMC). The reconstructed trajectories allow us to examine the long-term evolution of the VPOS. We identify 15 galaxies as members of the VPOS, including 9 MW and 6 LMC satellites. We find that the VPOS has remained a stable structure, maintaining a roughly constant thickness ( 15 kpc), flattening ( 0.2), and orientation over time. While the LMC exerts a strong gravitational influence on the MW satellites, its impact on the VPOS is limited, leading only to mild perturbations. The structural properties of the VPOS remain almost unchanged, whether or not LMC satellites are included in the analysis, indicating a smooth dynamical integration with the rest of VPOS members upon entering the MW virial radius. This minimal dynamical impact on the VPOS results from the remarkable alignment between the LMC's orbit and the plane's orientation. We conclude that the VPOS is a stable, long-lived structure that predates the recent infall of the LMC and retains nearly constant structural properties over the last 5 Gyrs. Our findings suggest a strong connection between the VPOS and the LMC, consistent with a scenario in which the LMC is on its second pericentre and the VPOS originated primarily from satellites stripped during the first passage.
15 pages, 6 figures, 1 table, accepted for publication in A&A
References in corpus (28)
- Are the Magellanic Clouds on their First Passage about the Milky Way?
- A Vast Thin Plane of Co-rotating Dwarf Galaxies Orbiting the Andromeda Galaxy
- Tango for three: Sagittarius, LMC, and the Milky Way
- The spatial distribution of the Milky Way and Andromeda satellite galaxies
- Small Dwarf Galaxies Within Larger Dwarfs: Why Some Are Luminous While Most Go Dark
- The orbital poles of Milky Way satellite galaxies: a rotationally supported disc-of-satellites
- Infall of substructures onto a Milky Way-like dark halo
- Gaia early DR3 systemic motions of Local Group dwarf galaxies and orbital properties with a massive Large Magellanic Cloud
- The discovery of seven extremely low surface brightness galaxies in the field of the nearby spiral galaxy M101
- Proper Motions, Orbits, and Tidal Influences of Milky Way Dwarf Spheroidal Galaxies
- The universal nature of subhalo accretion
- Gaia Data Release 3: The extragalactic content
- The effect of the LMC on the Milky Way system
- The merger and assembly histories of Milky Way- and M31-like galaxies with TNG50: disk survival through mergers
- Comparing the observable properties of dwarf galaxies on and off the Andromeda plane
- Tracing satellite planes in the Sculptor group: I. Discovery of three faint dwarf galaxies around NGC 253
- Magellanic satellites in CDM cosmological hydrodynamical simulations of the Local Group
- The Clustering of Orbital Poles Induced by the LMC: Hints for the Origin of Planes of Satellites
- Uncertainties associated with the backward integration of dwarf satellites using simple parametric potentials
- A co-rotating gas and satellite structure around the interacting galaxy pair NGC 4490/85
- On the Effect of the Large Magellanic Cloud on the Orbital Poles of Milky Way Satellite Galaxies
- A portrait of the Vast Polar Structure as a young phenomenon: hints from its member satellites
- The satellite galaxy plane of NGC 4490 in light of ΛCDM - Sparsity of similarly extreme analogs and a possible role of satellite pairs
- Equilibrium dynamical models in the inner region of the Large Magellanic Cloud based on Gaia DR3 kinematics
- Satellite group infall into the Milky Way: exploring the Crater-Leo case with new HST proper motions
- Predictions for the Detectability of Milky Way Satellite Galaxies and Outer-Halo Star Clusters with the Vera C. Rubin Observatory
- An intriguing coincidence between the majority of vast polar structure dwarfs and a recent major merger at the M31 position
- Group Accretion in Milky Way-like Stellar Haloes