Dwarf Galaxies with Ionizing Radiation Feedback. II: Spatially-resolved Star Formation Relation
arXiv:1210.6988 · doi:10.1088/0004-637X/779/1/8
Abstract
We investigate the spatially-resolved star formation relation using a galactic disk formed in a comprehensive high-resolution (3.8 pc) simulation. Our new implementation of stellar feedback includes ionizing radiation as well as supernova explosions, and we handle ionizing radiation by solving the radiative transfer equation rather than by a subgrid model. Photoheating by stellar radiation stabilizes gas against Jeans fragmentation, reducing the star formation rate. Because we have self-consistently calculated the location of ionized gas, we are able to make spatially-resolved mock observations of star formation tracers, such as H-alpha emission. We can also observe how stellar feedback manifests itself in the correlation between ionized and molecular gas. Applying our techniques to the disk in a galactic halo of 2.3e11 Msun, we find that the correlation between star formation rate density (estimated from mock H-alpha emission) and molecular hydrogen density shows large scatter, especially at high resolutions of <~ 75 pc that are comparable to the size of giant molecular clouds (GMCs). This is because an aperture of GMC size captures only particular stages of GMC evolution, and because H-alpha traces hot gas around star-forming regions and is displaced from the molecular hydrogen peaks themselves. By examining the evolving environment around star clusters, we speculate that the breakdown of the traditional star formation laws of the Kennicutt-Schmidt type at small scales is further aided by a combination of stars drifting from their birthplaces, and molecular clouds being dispersed via stellar feedback.
16 pages, 15 figures, Accepted for publication in the Astrophysical Journal, Image resolution greatly reduced, High-resolution version of this article is available at http://www.jihoonkim.org/index/research.html#sfmc
References in corpus (14)
- The CO-to-H2 Conversion Factor
- Molecular Gas and Star Formation in Nearby Disk Galaxies
- The Atomic to Molecular Transition in Galaxies. II: HI and H_2 Column Densities
- Making Galaxies in a Cosmological Context: The Need for Early Stellar Feedback
- Molecular Hydrogen and Global Star Formation Relations in Galaxies
- Dynamical Properties of z~2 Star Forming Galaxies and a Universal Star Formation Relation
- The Atomic to Molecular Transition in Galaxies. I: An Analytic Approximation for Photodissociation Fronts in Finite Clouds
- The Relationship Between Molecular Gas Tracers and Kennicutt-Schmidt Laws
- Star Formation in Atomic Gas
- Magnetohydronamic Evolution of HII Regions in Molecular Clouds: Simulation Methodology, Tests, and Uniform Media
- The Effect of the Interstellar Model on Star Formation Properties in Galactic Disks
- How Universal is the SFR - H2 Relation?
- Dwarf Galaxies with Ionizing Radiation Feedback. I: Escape of Ionizing Photons
- The Schmidt-Kennicutt Law of Matched-Age Star Forming Regions; Pa-alpha Observations of the Early-Phase Interacting Galaxy Taffy I
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- Conditions for Reionizing the Universe with A Low Galaxy Ionizing Photon Escape Fraction
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- The SILCC (SImulating the LifeCycle of molecular Clouds) project - II. Dynamical evolution of the supernova-driven ISM and the launching of outflows
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- SN 2010jl: Optical to hard X-ray observations reveal an explosion embedded in a ten solar mass cocoon
- Variable interstellar radiation fields in simulated dwarf galaxies: supernovae versus photoelectric heating
- Numerical Simulations of Radiatively-Driven Dusty Winds
- Galaxies that Shine: radiation-hydrodynamical simulations of disk galaxies
- Simulating an Isolated Dwarf Galaxy with Multi-Channel Feedback and Chemical Yields from Individual Stars
- The SILCC project --- IV. Impact of dissociating and ionising radiation on the interstellar medium and Halpha emission as a tracer of the star formation rate
- H-alpha emission in local galaxies: star formation, time variability and the diffuse ionized gas
- The physics of Lyman-alpha escape from disc-like galaxies
- A fundamental test for stellar feedback recipes in galaxy simulations
- The first galaxies: simulating their feedback-regulated assembly
- Simulating radiative feedback and star cluster formation in GMCs: I. Dependence on gravitational boundedness
- Ab initio Simulations of a Supernova Driven Galactic Dynamo in an Isolated Disk Galaxy
- Dwarf Galaxies with Ionizing Radiation Feedback. I: Escape of Ionizing Photons
- Interpreting the sub-linear Kennicutt-Schmidt relationship: The case for diffuse molecular gas
- A scaling relation for the molecular cloud lifetime in Milky Way-like galaxies
- High-redshift Galaxy Formation with Self-consistently Modeled Stars and Massive Black Holes: Stellar Feedback and Quasar Growth
- A Kennicutt-Schmidt relation at molecular cloud scales and beyond
- HI Global Scaling Relations in the WISE-WHISP Survey
- The impact of magnetic fields on the chemical evolution of the supernova-driven ISM
- Star Formation Variability as a Probe for the Baryon Cycle within Galaxies
- A panchromatic view of star cluster formation in a simulated dwarf galaxy starburst
- Impact of radiation feedback on the assembly of star clusters in galactic context