4.6 Article

THE RELATIONSHIPS AMONG COMPACT STELLAR SYSTEMS: A FRESH VIEW OF ULTRACOMPACT DWARFS

期刊

ASTRONOMICAL JOURNAL
卷 142, 期 6, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0004-6256/142/6/199

关键词

galaxies: dwarf; galaxies: individual (M87); galaxies: nuclei; galaxies: star clusters: general; galaxies: structure; globular clusters: general

资金

  1. Smithsonian Astrophysical Observatory
  2. National Science Foundation [AST-0808099, AST-0909237, AST-1101733, AST-1109878]
  3. Australian Government's innovation statement, Backing Australia's Ability
  4. Direct For Mathematical & Physical Scien [0808099] Funding Source: National Science Foundation
  5. Division Of Astronomical Sciences [0808099] Funding Source: National Science Foundation

向作者/读者索取更多资源

We use a combined imaging and spectroscopic survey of the nearby central cluster galaxy, M87, to assemble a sample of 34 confirmed ultracompact dwarfs (UCDs) with half-light radii of greater than or similar to 10 pc measured from Hubble Space Telescope images. This doubles the existing sample in M87, making it the largest such sample for any galaxy, while extending the detection of UCDs to unprecedentedly low luminosities (M-V = -9). With this expanded sample, we find no correlation between size and luminosity, in contrast to previous suggestions, and no general correlation between size and galactocentric distance. We explore the relationships between UCDs, less luminous extended clusters (including faint fuzzies), globular clusters (GCs), as well as early-type galaxies and their nuclei, assembling an extensive new catalog of sizes and luminosities for stellar systems. Most of the M87 UCDs follow a tight color-magnitude relation, offset from the metal-poor GCs. This, along with kinematical differences, demonstrates that most UCDs are a distinct population from normal GCs, and not simply a continuation to larger sizes and higher luminosities. The UCD color-magnitude trend couples closely with that for Virgo dwarf elliptical nuclei. We conclude that the M87 UCDs are predominantly stripped nuclei. The brightest and reddest UCDs may be the remnant nuclei of more massive galaxies while a subset of the faintest UCDs may be tidally limited and related to more compact star clusters. In the broader context of galaxy assembly, blue UCDs may trace halo build-up by accretion of low-mass satellites, while red UCDs may be markers of metal-rich bulge formation in larger galaxies.

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