4.7 Article

THE SLUGGS SURVEY: WIDE-FIELD STELLAR KINEMATICS OF EARLY-TYPE GALAXIES

期刊

ASTROPHYSICAL JOURNAL
卷 791, 期 2, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/791/2/80

关键词

galaxies: elliptical and lenticular, cD; galaxies: formation; galaxies: halos; galaxies: kinematics and dynamics; galaxies: structure

资金

  1. W. M. Keck Foundation
  2. NSF
  3. Sigma-Xi
  4. National Science Foundation [AST-0909237, AST-1211995]
  5. ARC [DP130100388]
  6. Division Of Astronomical Sciences
  7. Direct For Mathematical & Physical Scien [1211995] Funding Source: National Science Foundation

向作者/读者索取更多资源

We present stellar kinematics of 22 nearby early-type galaxies (ETGs), based on two-dimensional (2D) absorption line stellar spectroscopy out to similar to 2-4 R-e (effective radii), as part of the ongoing SLUGGS Survey. The galaxies span a factor of 20 in intrinsic luminosity, as well as a full range of environment and ETG morphology. Our data consist of good velocity resolution (sigma(inst) similar to 25 km s(-1)) integrated stellar-light spectra extracted from the individual slitlets of custom made Keck/DEIMOS slitmasks. We extract stellar kinematics measurements (V, sigma, h(3), and h(4)) for each galaxy. Combining with literature values from smaller radii, we present 2D spatially resolved maps of the large-scale kinematic structure in each galaxy. We find that the kinematic homogeneity found inside 1 R-e often breaks down at larger radii, where a variety of kinematic behaviors are observed. While central slow rotators remain slowly rotating in their halos, central fast rotators show more diversity, ranging from rapidly increasing to rapidly declining specific angular momentum profiles in the outer regions. There are indications that the outer trends depend on morphological type, raising questions about the proposed unification of the elliptical and lenticular (S0) galaxy families in the ATLAS(3D) survey. Several galaxies in our sample show multiple lines of evidence for distinct disk components embedded in more slowly rotating spheroids, and we suggest a joint photometric-kinematic approach for robust bulge-disk decomposition. Our observational results appear generally consistent with a picture of two-phase (in-situ plus accretion) galaxy formation.

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