On the Kinematics of Tidal Debris from Omega Cen's Progenitor Galaxy
- 1 January 2004
- journal article
- Published by Cambridge University Press (CUP) in Publications of the Astronomical Society of Australia
- Vol. 21 (2) , 237-241
- https://doi.org/10.1071/as04002
Abstract
The kinematic properties of tidal debris from an orbiting Galactic satellite is presented, on the assumption that its central part once contained the most massive Galactic globular cluster, ω Cen. We simulate dynamical evolution of a satellite galaxy that follows the present-day and likely past orbits of ω Cen, and analyse the kinematic nature of their tidal debris and randomly generated Galactic stars comprising spheroidal halo and flat disk components. It is found that the debris stars show a retrograde rotation at ∼–100 km s–1, which may accord with a recently discovered stellar stream at a radial velocity of ∼300 km s–1 towards the Galactic longitude of ∼270°. These stars also contribute, only in part, to a reported retrograde motion of the outer halo in the north Galactic pole direction, without significantly modifying local halo kinematics near the Sun. The prospects for future debris searches and the implications for the early evolution of the Galaxy are briefly presented.Keywords
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This publication has 21 references indexed in Scilit:
- Deciphering the Last Major Invasion of the Milky WayThe Astrophysical Journal, 2002
- Abundance Patterns in the Draco, Sextans, and Ursa Minor Dwarf Spheroidal GalaxiesThe Astrophysical Journal, 2001
- Kinematics of Metal-poor Stars in the Galaxy. II. Proper Motions for a Large Nonkinematically Selected SampleThe Astronomical Journal, 2000
- Kinematics of Metal-poor Stars in the Galaxy. III. Formation of the Stellar Halo and Thick Disk as Revealed from a Large Sample of Nonkinematically Selected StarsThe Astronomical Journal, 2000
- Evidence for the Hierarchical Formation of the Galactic SpheroidThe Astrophysical Journal, 2000
- Space Velocities of Globular Clusters. III. Cluster Orbits and Halo SubstructureThe Astronomical Journal, 1999
- The Giant Branch of omega Centauri. V. The Calcium Abundance DistributionThe Astrophysical Journal, 1996
- UBV starcounts in SA54 and global structure of the GalaxyThe Astronomical Journal, 1992
- Halo Response to Galaxy FormationPublished by Springer Nature ,1987
- Simulations of sinking satellitesThe Astrophysical Journal, 1983