A new parameterization of the star formation rate-dense gas mass relation: embracing gas density gradients
arXiv:2009.10652 · doi:10.3847/1538-4357/abb8d3
Abstract
It is well-established that a gas density gradient inside molecular clouds and clumps raises their star formation rate compared to what they would experience from a gas reservoir of uniform density. This effect should be observed in the relation between dense-gas mass and star formation rate of molecular clouds and clumps, with steeper gas density gradients yielding higher ratios. The content of this paper is two-fold. Firstly, we build on the notion of magnification factor introduced by Parmentier (2019) to redefine the dense-gas relation (i.e. the relation between and ). Not only does the ratio depend on the mean free-fall time of the gas and on its (intrinsic) star formation efficiency per free-fall time, it also depends on the logarithmic slope of the gas density profile and on the relative extent of the constant-density region at the clump center. Secondly, we show that nearby molecular clouds follow the newly-defined dense-gas relation, provided that their dense-gas mass is defined based on a volume density criterion. We also find the same trend for the dense molecular clouds of the Central Molecular Zone (CMZ) of the Galaxy, although this one is scaled down by a factor of compared to nearby clouds. The respective locii of both nearby and CMZ clouds in the parameter space is discussed.
12 pages, 7 figures, accepted for publication in ApJ
References in corpus (10)
- On the Star Formation Efficiency of Turbulent Magnetized Clouds
- On the Density Distribution in Star-forming Interstellar Clouds
- Equilibrium Star Cluster Formation
- Observational Evidence of Dynamic Star Formation Rate in Milky Way Giant Molecular Clouds
- Unfolding the Laws of Star Formation: The Density Distribution of Molecular Clouds
- Molecular clouds have power-law probability distribution functions
- A Tale of Three Cities: OmegaCAM discovers multiple sequences in the color-magnitude diagram of the Orion Nebula Cluster
- Star Formation Rates of Massive Molecular Clouds in the Central Molecular Zone
- The density gradient inside molecular-gas clumps as a booster of their star formation activity
- Molecular clumps disguising their star formation efficiency per freefall time: What we can do not to be fooled
Cited by in corpus (5)
- The bound mass of Dehnen models with centrally peaked star formation efficiency
- Reconciling extragalactic star formation efficiencies with theory: insights from PHANGS
- Density Exponent Analysis: Gravity-driven steepening of the density profiles of star-forming regions
- Effects of CO-dark Gas on Measurements of Molecular Cloud Stability and the Size-Linewidth Relationship
- Rebounding Cores to Build Star Cluster Multiple Populations