Diffstar: A Fully Parametric Physical Model for Galaxy Assembly History
arXiv:2205.04273 · doi:10.1093/mnras/stac3118
Abstract
We present Diffstar, a smooth parametric model for the in-situ star formation history (SFH) of galaxies. Diffstar is distinct from conventional SFH models that are used to interpret the spectral energy distribution (SED) of an observed galaxy, because our model is parametrized directly in terms of basic features of galaxy formation physics. The Diffstar model assumes that star formation is fueled by the accretion of gas into the dark matter halo of the galaxy, and at the foundation of Diffstar is a parametric model for halo mass assembly, Diffmah. We include parametrized ingredients for the fraction of accreted gas that is eventually transformed into stars, and for the timescale over which this transformation occurs, some galaxies in Diffstar experience a quenching event at time and may subsequently experience rejuvenated star formation. We fit the SFHs of galaxies predicted by the IllustrisTNG (TNG) and UniverseMachine (UM) simulations with the Diffstar parameterization, and show that our model is sufficiently flexible to describe the average stellar mass histories of galaxies in both simulations with an accuracy of dex across most of cosmic time. We use Diffstar to compare TNG to UM in common physical terms, finding that: (i) star formation in UM is less efficient and burstier relative to TNG; (ii) galaxies in UM have longer gas consumption timescales, , relative to TNG; (iii) rejuvenated star formation is ubiquitous in UM, whereas quenched TNG galaxies rarely experience sustained rejuvenation; and (iv) in both simulations, the distributions of , , and share a common characteristic dependence upon halo mass, and present significant correlations with halo assembly history. [Abridged]
26 pages, 21 figures
References in corpus (38)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- The propagation of uncertainties in stellar population synthesis modeling I: The relevance of uncertain aspects of stellar evolution and the IMF to the derived physical properties of galaxies
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- A unified model for AGN feedback in cosmological simulations of structure formation
- Rotation-Dependent Catastrophic Disruption of Gravitational Aggregates
- Recovering galaxy star formation and metallicity histories from spectra using VESPA
- LoCuSS: The slow quenching of star formation in cluster galaxies and the need for pre-processing
- The star formation main sequence and stellar mass assembly of galaxies in the Illustris simulation
- On the Lack of Evolution in Galaxy Star Formation Efficiency
- The DEEP2 Galaxy Redshift Survey: Color and Luminosity Dependence of Galaxy Clustering at z~1
- The pseudo-evolution of halo mass
- A Simple Technique for Predicting High-Redshift Galaxy Evolution
- Non-parametric Star Formation History Reconstruction with Gaussian Processes I: Counting Major Episodes of Star Formation
- Revisiting the Integrated Star Formation Law. Paper I: Non-Starbursting Galaxies
- On the SFR-M main sequence archetypal star-formation history and analytical models
- Revisiting the Integrated Star Formation Law. II. Starbursts and the Combined Global Schmidt Law
- Stochastic modelling of star-formation histories II: star-formation variability from molecular clouds and gas inflow
- The Diversity and Variability of Star Formation Histories in Models of Galaxy Evolution
- Stochastic modeling of star-formation histories I: the scatter of the star-forming main sequence
- Spatial Clustering of Dark Matter Halos: Secondary Bias, Neighbor Bias, and the Influence of Massive Neighbors on Halo Properties
- On the importance of using appropriate spectral models to derive physical properties of galaxies at 0.7<z<2.8
- Constraints on Physical Properties of z~6 Galaxies Using Cosmological Hydrodynamic Simulations
- Filamentary Star Formation in NGC 1275
- Evidence for recent star formation in BCGs: a correspondence between blue cores and UV excess
- Rejuvenation in quiescent galaxies in LEGA-C
- The galaxy-halo connection of emission-line galaxies in IllustrisTNG
- Predicting Galaxy Star Formation Rates via the Co-evolution of Galaxies and Halos
- Illustrating galaxy-halo connection in the DESI era with IllustrisTNG
- Quenching Timescales in the IllustrisTNG Simulation
- How Well Can We Measure Galaxy Dust Attenuation Curves? The Impact of the Assumed Star-Dust Geometry Model in SED Fitting
- The Evolution of Brightest Cluster Galaxies in the Nearby Universe I: Colours and Stellar Masses from the Sloan Digital Sky Survey and Wide Infrared Survey Explorer
- Baryonic mass budgets for haloes in the EAGLE simulation, including ejected and prevented gas
- A very deep Chandra observation of Abell 1795: The Cold Front and Cooling Wake
- Connecting Galaxies with Halos Across Cosmic Time: Stellar mass assembly distribution modeling of galaxy statistics
- Gas fractions and depletion times in galaxies with different degrees of interaction
- Galaxy assembly bias and large-scale distribution: a comparison between IllustrisTNG and a semi-analytic model
Cited by in corpus (12)
- Forward modeling of galaxy populations for cosmological redshift distribution inference
- Hierarchical Bayesian inference of photometric redshifts with stellar population synthesis models
- Stochastic Modelling of Star Formation Histories III. Constraints from Physically-Motivated Gaussian Processes
- A simple spectroscopic technique to identify rejuvenating galaxies
- OpenUniverse2024: A shared, simulated view of the sky for the next generation of cosmological surveys
- Tracing the evolutionary pathways of dust and cold gas in high-z quiescent galaxies with SIMBA
- Emission Line Predictions for Mock Galaxy Catalogues: a New Differentiable and Empirical Mapping from DESI
- pop-cosmos: Insights from generative modeling of a deep, infrared-selected galaxy population
- A semi-analytical perspective on massive red galaxies: I. Assembly history, environment & redshift evolution
- GalSBI: Phenomenological galaxy population model for cosmology using simulation-based inference
- GalSBI-SPS: a stellar population synthesis-based galaxy population model for cosmology and galaxy evolution applications
- Testing subhalo abundance matching with galaxy kinematics