On the Timescale for Star Formation in Galaxies
arXiv:0909.2243 · doi:10.1088/0004-637X/705/1/650
Abstract
The timescale for star formation, a measure of how quickly neutral gas is being converted to stars, is considerably longer than typical dynamical timescales associated with a galactic disk. For purposes of modeling galaxy evolution, however, it would be extremely attractive if the star formation timescale were proportional to an easily derived dynamical timescale. We compare estimates of the star formation timescale within nearby galaxies, based on the work of Leroy et al. (2008) and existing BIMA SONG CO data, with three simple forms of the dynamical time: the orbital time, the free-fall time at the midplane density, and the disk Jeans time (the growth time for gravitational instabilities in a disk). When taking into account the gravity of the stellar disk in an approximate way, all three timescales show correlations with the star formation timescale, though none of the correlations can be accurately described as linear. Systematic errors in estimating appropriate gas masses and the stellar velocity dispersion may obscure an underlying correlation, but we focus instead on a model where the timescale for H_2 formation from HI is decoupled from the timescale for star formation from H_2. The Jeans time correlates well with the first of these timescales, but the relationship is still non-linear, and requires a characteristic GMC lifetime that increases toward galaxy centers.
10 pages; to appear in ApJ
References in corpus (12)
- The Star Formation Efficiency in Nearby Galaxies: Measuring Where Gas Forms Stars Effectively
- The Star Formation Law in Nearby Galaxies on Sub-Kpc Scales
- THINGS: The HI Nearby Galaxy Survey
- High-Resolution Rotation Curves and Galaxy Mass Models from THINGS
- The GALEX Ultraviolet Atlas of Nearby Galaxies
- Star Formation in NGC 5194 (M51a). II. The Spatially-Resolved Star Formation Law
- What is Driving the HI Velocity Dispersion?
- The Relationship Between Molecular Gas Tracers and Kennicutt-Schmidt Laws
- On the Similarity between Cluster and Galactic Stellar Initial Mass Functions
- Pressure Relations and Vertical Equilibrium in the Turbulent, Multiphase ISM
- Gas Properties and Implications for Galactic Star Formation in Numerical Models of the Turbulent, Multiphase ISM
- The origin of steep vertical stellar distribution in the Galactic disk
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- Adiabatic contraction revisited: implications for primordial black holes
- Deep 21-cm HI Observations at z~0.1: The Precursor to the Arecibo Ultra Deep Survey
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- Stability of galaxies across morphological sequence
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