Bottom-heavy initial mass function in a nearby compact L*-galaxy
arXiv:1305.5542 · doi:10.1093/mnrasl/slt070
Abstract
We present orbit-based dynamical models and stellar population analysis of galaxy SDSS J151741.75-004217.6, a low-redshift (z=0.116) early-type galaxy (ETG) which, for its moderate luminosity, has an exceptionally high velocity dispersion. We aim to determine the central black hole mass (M_bh), the i-band stellar mass-to-light ratio, and the low-mass slope of the initial mass function (IMF). Combining constraints from HST imaging and longslit kinematic data with those from fitting the SDSS spectrum with stellar populations models of varying IMF, we show that this galaxy has a large fraction of low-mass stars, significantly higher than implied even by a Salpeter IMF. We exclude a Chabrier/Kroupa as well as a unimodal (i.e. single-segment) IMF, while a bimodal (low-mass tapered) shape is consistent with the dynamical constraints. Thereby, our study demonstrates that a very bottom-heavy IMF can exist even in an L* ETG. We place an upper limit of ~10^{10.5}M_sun on M_bh, which still leaves open the possibility of an extremely massive BH.
5 pages, 3 figures, accepted for publication in MNRAS Letters
References in corpus (11)
- The SAURON project -- IX. A kinematic classification for early-type galaxies
- Concentration, Spin and Shape of Dark Matter Haloes as a Function of the Cosmological Model: WMAP1, WMAP3 and WMAP5 results
- A systematic variation of the stellar initial mass function in early-type galaxies
- Triaxial orbit based galaxy models with an application to the (apparent) decoupled core galaxy NGC 4365
- SPIDER VIII - Constraints on the Stellar Initial Mass Function of Early-type Galaxies from a Variety of Spectral Features
- The Majority of Compact Massive Galaxies at z~2 are Disk Dominated
- An Over-Massive Black Hole in the Compact Lenticular Galaxy NGC1277
- Is the black hole in NGC1277 really over-massive?
- Spatially Resolved Stellar Kinematics of Field Early-Type Galaxies at z=1: Evolution of the Rotation Rate
- A Search for the Most Massive Galaxies. II. Structure, Environment and Formation
- A Search for the Most Massive Galaxies. III. Global and Central Structure
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