The Milky Way and M31 Orbital History: Did the Local Group evolve in isolation?
arXiv:2411.07370 · doi:10.1093/mnras/staf218
Abstract
We use new measurements of the M31 proper motion to examine the Milky Way (MW) - M31 orbit and angular momentum. For Local Group (LG) mass consistent with measured values, and assuming the system evolves in isolation, we show a wide range of orbits is possible. We compare to a sample of LG-like systems in the Illustris simulation and find that of these pairs have undergone a pericentric passage. Using the simulated sample, we examine how accurately an isolated, two-body model describes the MW-M31 orbit, and show that of the analogues in the simulation are well-modeled by such an orbit. Systems that evolve in isolation by this definition are found to have a lower rate of major mergers and, in particular, have no major mergers since . For all systems, we find an increase in the orbital angular momentum, which is fairly independent of the merger rate and is possibly explained by the influence of tidal torques on the LG. Given the likely quiet recent major merger history of the MW, it is plausible that the isolated two-body model appropriately describes the orbit, though recent evidence for a major merger in M31 may complicate this interpretation.
11 pages, 10 figures
References in corpus (21)
- The M31 Velocity Vector. II. Radial Orbit Towards the Milky Way and Implied Local Group Mass
- M31 Transverse Velocity and Local Group Mass from Satellite Kinematics
- Measuring the Mass of the Large Magellanic Cloud with Stellar Streams Observed by
- A dynamical model of the local cosmic expansion
- All-Sky Dynamical Response of the Galactic Halo to the Large Magellanic Cloud
- Detection of the Milky Way reflex motion due to the Large Magellanic Cloud infall
- The Collision Between The Milky Way And Andromeda
- Detection of the LMC-induced sloshing of the Galactic halo
- Balancing mass and momentum in the Local Group
- A Council of Giants
- The Local Group Mass in the light of Gaia
- The proper motion of Andromeda from Gaia eDR3: confirming a nearly radial orbit
- The sum of the masses of the Milky Way and M31: a likelihood-free inference approach
- Implications of the Milky Way travel velocity for dynamical mass estimates of the Local Group
- Evidence for a Massive Andromeda Galaxy Using Satellite Galaxy Proper Motions
- Local Group timing argument and virial theorem mass estimators from cosmological simulations
- The Local Group's mass: probably no more than the sum of its parts
- Weighing Milky Way and Andromeda in an expanding CDM Universe: Decreasing the Local Group mass
- On the Mass Assembly History of the Local Group
- Estimation of the masses in the Local Group by Gradient Boosted Decision Trees
- Apocalypse When? No Certainty of a Milky Way -- Andromeda Collision