Variations in the slope of the resolved star-forming main sequence: a tool for constraining the mass of star-forming regions
arXiv:1912.04290 · doi:10.1093/mnrasl/slaa013
Abstract
The correlation between galaxies' integrated stellar masses and star formation rates (the `star formation main sequence'; SFMS) is a well-established scaling relation. Recently, surveys have found a relationship between the star formation rate and stellar mass surface densities on kpc and sub-kpc scales (the `resolved SFMS'; rSFMS). In this work, we demonstrate that the rSFMS emerges naturally in FIRE-2 zoom-in simulations of Milky Way-mass galaxies. We make SFR and stellar mass maps of the simulated galaxies at a variety of spatial resolutions and star formation averaging time-scales and fit the rSFMS using multiple methods from the literature. While the absolute value of the SFMS slope depends on the fitting method, the slope is steeper for longer star formation time-scales and lower spatial resolutions regardless of the fitting method employed. We present a toy model that quantitatively captures the dependence of the simulated galaxies' rSFMS slope on spatial resolution and use it to illustrate how this dependence can be used to constrain the characteristic mass of star-forming clumps.
Accepted for publication in MNRAS Letters
References in corpus (17)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- UV Star Formation Rates in the Local Universe
- A Highly Consistent Framework for the Evolution of the Star-Forming "Main Sequence" from z~0-6
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- The Herschel view of the dominant mode of galaxy growth from z=4 to the present day
- The star formation main sequence and stellar mass assembly of galaxies in the Illustris simulation
- Star formation is boosted (and quenched) from the inside out: radial star formation profiles from MaNGA
- Probing the role of the galactic environment in the formation of stellar clusters; using M83 as a test bench
- The ALMaQUEST Survey: The molecular gas main sequence and the origin of the star forming main sequence
- The MUSE Atlas of Disks (MAD): Resolving Star Formation Rates and Gas Metallicities on < 100pc Scales
- SDSS-IV MANGA: Spatially Resolved Star Formation Main Sequence and LI(N)ER Sequence
- The ALMaQUEST Survey: III. Scatter in the resolved star forming main sequence is primarily due to variations in star formation efficiency
- Resolved galaxy scaling relations in the EAGLE simulation: star formation, metallicity and stellar mass on kpc scales
- The Relationship Between Star-formation Activity and Galaxy Structural Properties in CANDELS and a Semi-analytic Model
- The sub-galactic and nuclear main sequences for local star-forming galaxies
- GASP. XX. From the loose spatially-resolved to the tight global SFR-Mass relation in local spiral galaxies
Cited by in corpus (9)
- The time-scales probed by star formation rate indicators for realistic, bursty star formation histories from the FIRE simulations
- Spatially resolved star formation and fuelling in galaxy interactions
- Star formation scaling relations at ~100 pc from PHANGS: Impact of completeness and spatial scale
- The ALMaQUEST Survey: V. The non-universality of kpc-scale star formation relations and the factors that drive them
- ALMaQUEST -- IV. The ALMA-MaNGA QUEnching and STar formation (ALMaQUEST) Survey
- VERTICO III: The Kennicutt-Schmidt relation in Virgo cluster galaxies
- Detecting the Cosmic Web: Lyα Emission from Simulated Filaments at z=3
- Resolved star formation in TNG100 central and satellite galaxies
- Measuring Scaling Relationships: Fitting Technique Matters