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The Centers of Early-Type Galaxies with Hubble Space Telescope. VI. Bimodal Central Surface Brightness Profiles

Lauer, T.~R. and Gebhardt, K. and Faber, S.~M. and Richstone, D. and Tremaine, S. and Kormendy, J. and Aller, M.~C. and Bender, R. and Dressler, A. an

Keywords

Galaxies: Nuclei, Galaxies: Photometry, Galaxies: Structure

Abstract

We combine the results from several HST investigations of the central structure of early-type galaxies to generate a large sample of parameterized surface photometry. The studies included were those that used the _s15Nuker law_s15 to characterize the inner light distributions of the galaxies. The sample comprises WFPC1 and WFPC2 V band observations published earlier by our group, R band WFPC2 photometry of Rest et al., NICMOS H band photometry by Ravindranath et al. and Quillen et al., and the BCG WFPC2 I band photometry of Laine et al. The distribution of the logarithmic slopes of the central profiles strongly affirms that the central structure of elliptical galaxies with Mv < -19 is bimodal, based on both parametric and non-parametric analysis. At the HST resolution limit, most galaxies are either power-law systems, which have steep cusps in surface brightness, or core systems, which have shallow cusps interior to a steeper envelope brightness distribution. A rapid transition between the two forms occurs over the luminosity range -22 < Mv < -20, with cores dominating at the highest luminosities, and power-laws at the lowest. There are a few _s15intermediate_s15 systems that have both cusp slopes and total luminosities that fall within the core/power-law transition, but they are rare and do not fill in the overall bimodal distribution of cusp slopes. These results are inconsistent with the Ferrarese et al. Virgo Cluster Survey (VCS) analysis. However, using galaxies common to the VCS samples, we demonstrate that the VCS models of the cusps are either a poor match to the observations or consist of forms fitted to the galaxy envelopes and extrapolated inward to the HST resolution limit.

Information

Published
2007 as article
ApJ, 664 - page(s): 226-256
Contact
Dr. Stella Seitz
Type
experimental work
Links
pdf
adsabs.harvard.edu/a…
Related to the research area(s):
F
e-Print
arXiv:astro-ph/0609762

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