Detection of a distinct metal-poor stellar halo in the early-type galaxy NGC 3115
arXiv:1412.2752 · doi:10.1088/0004-637X/800/1/13
Abstract
We present the resolved stellar populations in the inner and outer halo of the nearby lenticular galaxy NGC~3115. Using deep HST observations, we analyze stars two magnitudes fainter than the tip of the red giant branch (TRGB). We study three fields along the minor axis of this galaxy, 19, 37 and 54 kpc from its center -- corresponding to 7, 14, 21 effective radii (r_{e}). Even at these large galactocentric distances, all of the fields are dominated by a relatively enriched population, with the main peak in the metallicity distribution decreasing with radius from [Z/H] ~ -0.5 to -0.65. The fraction of metal-poor stars ([Z/H] < -0.95) increases from 17%, at 16-37 kpc, to 28%, at ~54 kpc. We observe a distinct low metallicity population (peaked at [Z/H] ~ -1.3 and with total mass 2*10^{10}M_{\odot} ~ 14% of the galaxy's stellar mass) and argue that this represents the detection of an underlying low metallicity stellar halo. Such halos are generally predicted by galaxy formation theories and have been observed in several late type galaxies including the Milky Way and M31. The metallicity and spatial distribution of the stellar halo of NGC~3115 are consistent with the galaxy's globular cluster system, which has a similar low metallicity population that becomes dominant at these large radii. This finding supports the use of globular clusters as bright chemo-dynamical tracers of galaxy halos. These data also allow us to make a precise measurement of the magnitude of the TRGB, from which we derive a distance modulus of NGC~3115 of 30.05\pm0.05\pm0.10_{sys} (10.2\pm0.2\pm0.5_{sys} Mpc).
18 pages, 16 figures, accepted for publication in ApJ
References in corpus (12)
- The Dartmouth Stellar Evolution Database
- The accretion origin of the Milky Way's stellar halo
- The ACS Nearby Galaxy Survey Treasury IX. Constraining asymptotic giant branch evolution with old metal-poor galaxies
- The SAGES Legacy Unifying Globulars and GalaxieS Survey (SLUGGS): Sample definition, methods, and initial results
- Large-scale study of the NGC 1399 globular cluster system in Fornax
- Parametrizing the Stellar Haloes of Galaxies
- Global Properties of M31's Stellar Halo from the SPLASH Survey: II. Metallicity Profile
- Infrared Tip of the Red Giant Branch and Distances to the Maffei/IC 342 Group
- An HST/ACS investigation of the spatial and chemical structure and sub-structure of NGC 891, a Milky Way analogue
- Tracing the outer halo in a giant elliptical to 25 Reff
- The SLUGGS Survey: HST/ACS Mosaic Imaging of the NGC 3115 Globular Cluster System
- Abundance analysis for long-period variables II. RGB and AGB stars in the globular cluster 47\,Tuc
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- The Extended Disk Galaxy Exploration Science Survey: Description and Surface Brightness Profile Properties
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