First results from SMAUG: Insights into star formation conditions from spatially-resolved ISM properties in TNG50
arXiv:2006.16314 · doi:10.3847/1538-4357/ac3d2d
Abstract
Physical and chemical properties of the interstellar medium (ISM) at sub-galactic (kpc) scales play an indispensable role in controlling the ability of gas to form stars. As part of the SMAUG (Simulating Multiscale Astrophysics to Understand Galaxies) project, in this paper, we use the TNG50 cosmological simulation to explore the physical parameter space of 8 resolved ISM properties in star-forming regions to constrain the areas of this hyperspace over which most star-forming environments exist. We deconstruct our simulated galaxies spanning a wide range of mass (M M) and redshift () into kpc-sized regions, and statistically analyze the gas/stellar surface densities, gas metallicity, vertical stellar velocity dispersion, epicyclic frequency and dark-matter volumetric density representative of each region in the context of their star formation activity and galactic environment (radial galactocentric location). By examining the star formation rate (SFR) weighted distributions of these properties, we show that stars primarily form in two spatially distinct environmental regimes, which are brought about by an underlying bi-component radial SFR surface density profile in galaxies. We examine how the relative prominence of these two regimes depends on host galaxy mass and cosmic time. We also compare our findings with those from integral field spectroscopy observations and achieve a good overall agreement. Further, using dimensionality reduction, we characterise the aforementioned hyperspace to reveal a high-degree of multicollinearity in relationships amongst ISM properties that drive the distribution of star formation at kpc-scales. Based on this, we show that a reduced 3D representation underpinned by a multi-variate radius relationship is sufficient to capture most of the variance in the original 8D space.
Updated intro, minor text and abstract modifications. More information on the SMAUG project and the other first result papers can be found here: https://www.simonsfoundation.org/flatiron/center-for-computational-astrophysics/galaxy-formation/smaug/papersplash1
References in corpus (31)
- 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
- Overview of the SDSS-IV MaNGA Survey: Mapping Nearby Galaxies at Apache Point Observatory
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- A New Calculation of the Ionizing Background Spectrum and the Effects of HeII Reionization
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- The Data Reduction Pipeline for the SDSS-IV MaNGA IFU Galaxy Survey
- The Size Evolution of Star-forming and Quenched Galaxies in the IllustrisTNG simulation
- On the Lack of Evolution in Galaxy Star Formation Efficiency
- Morphology and star formation in IllustrisTNG: the build-up of spheroids and discs
- Dynamically Driven Evolution of the Interstellar Medium in M51
- Formation of Spiral-Arm Spurs and Bound Clouds in Vertically Stratified Galactic Gas Disks
- GMC formation by agglomeration and self gravity
- First results from SMAUG: Characterization of Multiphase Galactic Outflows from a Suite of Local Star-Forming Galactic Disk Simulations
- Atomic and molecular gas in IllustrisTNG galaxies at low redshift
- Do galaxy global relationships emerge from local ones? The SDSS IV MaNGA surface mass density-metallicity relation
- The ALMaQUEST Survey: The molecular gas main sequence and the origin of the star forming main sequence
- Spatially Resolved Star Formation and Inside-out Quenching in the TNG50 Simulation and 3D-HST Observations
- Efficient early stellar feedback can suppress galactic outflows by reducing supernova clustering
- The SAMI Galaxy Survey: Exploring the gas-phase Mass-Metallicity Relation
- The spatially resolved Kennicutt-Schmidt relation in the HI dominated regions of spiral and dwarf irregular galaxies
- First results from SMAUG: Uncovering the Origin of the Multiphase Circumgalactic Medium with a Comparative Analysis of Idealized and Cosmological Simulations
- Probing interstellar turbulence in cirrus with deep optical imaging: no sign of energy dissipation at 0.01 pc scale
- CMZoom: Survey Overview and First Data Release
- Resolved galaxy scaling relations in the EAGLE simulation: star formation, metallicity and stellar mass on kpc scales
- From global to spatially resolved in low-redshift galaxies
- First results from SMAUG: The need for preventative stellar feedback and improved baryon cycling in semi-analytic models of galaxy formation
- The EDGE-CALIFA Survey: Exploring the Star Formation Law through Variable Selection
- Spatial distribution of stellar mass and star formation activity at 0.2<z<1.2 across and along the Main Sequence
- Why are AGN found in High Mass Galaxies?
- Spatially Resolved Dust, Gas, and Star Formation in the Dwarf Magellanic Irregular NGC4449
- Cosmological simulations of quasar fueling to sub-parsec scales using Lagrangian hyper-refinement