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Absolute Proper Motion of the Canis Major Dwarf Galaxy Candidate

Astrophysics 2009-11-13 v1

Abstract

We have measured the absolute proper motion of the candidate Canis Major dwarf galaxy (CMa) at (l,b)=(240\arcdeg,8\arcdeg)(l,b) = (240\arcdeg, -8\arcdeg). Likely main-sequence stars in CMa have been selected from a region in the color-magnitude diagram that has very little contamination from known Milky Way components. We obtain μlcosb=1.47±0.37\mu_{l} cos b = -1.47 \pm 0.37 and μb=1.07±0.38\mu_{b} = -1.07 \pm 0.38 mas yr1^{-1}, on the ICRS system via Hipparcos stars. Together with the radial velocity of 109 km s1^{-1}, and the assumed distance of 8 kpc, these results imply a space motion of (Π,Θ,W)=(5±12,188±10,49±15)(\Pi, \Theta, W) = (-5 \pm 12, 188 \pm 10, -49 \pm 15) km s1^{-1}. While CMa has in-plane rotation similar to the mean of thick disk stars, it shows significant (3σ)(3\sigma) motion perpendicular to the disk, and differs even more (7σ)(7\sigma) from that expected for the Galactic warp. The WW velocity lends support to the argument that the CMa overdensity is part of a satellite galaxy remnant.

Keywords

Cite

@article{arxiv.astro-ph/0508247,
  title  = {Absolute Proper Motion of the Canis Major Dwarf Galaxy Candidate},
  author = {Dana I. Dinescu and David Martinez-Delgado and Terrence M. Girard and Jorge Penarrubia and Hans-Walter Rix and David Butler and William F. van Altena},
  journal= {arXiv preprint arXiv:astro-ph/0508247},
  year   = {2009}
}

Comments

12 pages, 3 figures, accepted for publication in ApJ Letters