Contribution of the Large Magellanic Cloud to the Galactic Warp
arXiv:astro-ph/0203505 · doi:10.1016/S1384-1076(02)00138-0
Abstract
Multi-scale interaction between the LMC, Galactic halo, and the disk is examined with N-body simulations, and precise amplitudes of the Galactic warp excitation are obtained. The Galactic models are constructed most realistically to satisfy available observational constraints on the local circular velocity, the mass, surface density and thickness of the disk, the mass and size of the bulge, the local density of the halo matter at the solar radius, and the mass and orbit of the LMC. By using hybrid algorithm (SCF-TREE) I have succeeded to follow the evolution with millions of particles. The orbiting satellite excites density enhancement as a wake, and the wake exerts a tidal force on the disk. Because of the additional torque from the wakes in the halo, the amplitudes of the induced warps are much larger than the classical estimate by [hunt1969], who considered only the direct torque from the LMC. The obtained amplitudes of m=0, 1, 2 warps in the larger halo model show very good agreement with the observed amplitude in the Milky Way. This result revives the LMC as a possible candidate of the origin of the Galactic warp. Our smaller halo model, however, yield only weak warps in all the harmonic modes. Therefore the halo still has significant influence on excitation of warp even in the interaction scenario for excitation of warps.
36 pages, including 20 EPS figures. Final revision for the publication
Cited by in corpus (20)
- Are the Magellanic Clouds on their First Passage about the Milky Way?
- Outer structure of the Galactic warp and flare: explaining the Canis Major over-density
- One Ring to Encompass them All: A giant stellar structure that surrounds the Galaxy
- Vertical density waves in the Milky Way disc induced by the Sagittarius Dwarf Galaxy
- Response of the Milky Way's disc to the Large Magellanic Cloud in a first infall scenario
- Orbits of Massive Satellite Galaxies: I. A Close Look at the Large Magellanic Cloud and a New Orbital History for M33
- A Magellanic Origin for the Warp of the Galaxy
- A Capture Scenario for Globular Cluster Omega Centauri
- Evidence for coupling between the Sagittarius dwarf galaxy and the Milky Way warp
- Formation of a giant HI bridge between M31 and M33 from their tidal interaction
- Disruption of a Dwarf Galaxy Under Strong Shocking: The Origin of omega Centauri
- A possible common halo of the Magellanic Clouds
- Constraints of the Clumpyness of Dark Matter Halos Through Heating of the Disk Galaxies
- Constraining the age of the NGC 4565 HI Disk Warp: Determining the Origin of Gas Warps
- Dynamical flows through Dark Matter Haloes II: one and two points statistics at the virial radius
- The influences of the Magellanic Clouds on the Galaxy: Pole shift, warp, and star formation history
- Response of a galactic disc to vertical perturbations : Strong dependence on density distribution
- The Magellanic impact: Collision between the outer Galactic HI disk and the leading arms of the Magellanic stream
- Three-Dimensional Kinematics of Classical Cepheids
- Feasibility of an Infrared Parallax Program Using the Fan Mountain Tinsley Reflector