Published May 20, 2006 | Version Published
Journal Article Open

Detection of a 63 degrees cold stellar stream in the Sloan Digital Sky Survey

  • 1. ROR icon Astronomical Observatory of Rome
  • 2. ROR icon National and Kapodistrian University of Athens

Abstract

We report on the detection in Sloan Digital Sky Survey data of a 63°-long tidal stream of stars, extending from Ursa Major to Cancer. The stream has no obvious association with the orbit of any known cluster or galaxy. The contrast of the detected stream is greatest when using a star count filter that is matched to the color-magnitude distribution of stars in M13, which suggests that the stars making up the stream are old and metal-poor. The visible portion of the stream is very narrow and about 8.5 kpc above the Galactic disk, suggesting that the progenitor is or was a globular cluster. While the surface density of the stream varies considerably along its length, its path on the sky is very smooth and uniform, showing no evidence of perturbations by large mass concentrations in the nearby halo. While definitive constraints cannot be established without radial velocity information, the stream's projected path and estimates of its distance suggest that we are observing the stream near the perigalacticon of its orbit.

Additional Information

© 2006 American Astronomical Society. Received 2006 March 17; accepted 2006 April 14; published 2006 May 2. Print publication: Issue 1 (2006 May 20). We are grateful to Helio Rocha-Pinto for comments that significantly improved the manuscript. Funding for the creation and distribution of the SDSS Archive has been provided by the Alfred P. Sloan Foundation, the Participating Institutions, the National Aeronautics and Space Administration, the National Science Foundation, the US Department of Energy, the Japanese Monbukagakusho, and the Max Planck Society. Facilities: Sloan

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Identifiers

Eprint ID
12578
Resolver ID
CaltechAUTHORS:GRIapjl06b

Funding

Alfred P. Sloan Foundation
Participating Institutions
NASA
NSF
Department of Energy (DOE)
Japanese Monbukagakusho
Max Planck Society

Dates

Created
2009-01-12
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Updated
2021-11-08
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