The Diversity and Variability of Star Formation Histories in Models of Galaxy Evolution
arXiv:2007.07916 · doi:10.1093/mnras/staa2150
Abstract
Understanding the variability of galaxy star formation histories (SFHs) across a range of timescales provides insight into the underlying physical processes that regulate star formation within galaxies. We compile the SFHs of galaxies at from an extensive set of models, ranging from cosmological hydrodynamical simulations (Illustris, IllustrisTNG, Mufasa, Simba, EAGLE), zoom simulations (FIRE-2, g14, and Marvel/Justice League), semi-analytic models (Santa Cruz SAM) and empirical models (UniverseMachine), and quantify the variability of these SFHs on different timescales using the power spectral density (PSD) formalism. We find that the PSDs are well described by broken power-laws, and variability on long timescales ( Gyr) accounts for most of the power in galaxy SFHs. Most hydrodynamical models show increased variability on shorter timescales ( Myr) with decreasing stellar mass. Quenching can induce dex of additional power on timescales Gyr. The dark matter accretion histories of galaxies have remarkably self-similar PSDs and are coherent with the in-situ star formation on timescales Gyr. There is considerable diversity among the different models in their (i) power due to SFR variability at a given timescale, (ii) amount of correlation with adjacent timescales (PSD slope), (iii) evolution of median PSDs with stellar mass, and (iv) presence and locations of breaks in the PSDs. The PSD framework is a useful space to study the SFHs of galaxies since model predictions vary widely. Observational constraints in this space will help constrain the relative strengths of the physical processes responsible for this variability.
31 pages, 17 figures (+ appendix). Resubmitted to MNRAS after responding to referee's comments. Comments are welcome!
References in corpus (68)
- The NumPy array: a structure for efficient numerical computation
- Cosmic Star Formation History
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- 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
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- Properties of galaxies reproduced by a hydrodynamic simulation
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- A Semi-Analytic Model for the Co-evolution of Galaxies, Black Holes, and Active Galactic Nuclei
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- The Circumgalactic Medium
- Introducing the Illustris Project: the evolution of galaxy populations across cosmic time
- Formation of Massive Galaxies at High Redshift: Cold Streams, Clumpy Disks and Compact Spheroids
- A unified model for AGN feedback in cosmological simulations of structure formation
- Constraining the Low-Mass Slope of the Star Formation Sequence at 0.5<z<2.5
- The Herschel view of the dominant mode of galaxy growth from z=4 to the present day
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- Modeling the Time Variability of SDSS Stripe 82 Quasars as a Damped Random Walk
- Compaction and Quenching of High-z Galaxies in Cosmological Simulations: Blue and Red Nuggets
- The effect of galaxy mass ratio on merger--driven starbursts
- Grackle: a Chemistry and Cooling Library for Astrophysics
- Evidence for Mature Bulges and an Inside-out Quenching Phase 3 Billion Years After the Big Bang
- emcee v3: A Python ensemble sampling toolkit for affine-invariant MCMC
- The lifecycle of molecular clouds in nearby star-forming disc galaxies
- Introduction to astroML: Machine Learning for Astrophysics
- A fitting formula for the merger timescale of galaxies in hierarchical clustering
- Fast and inefficient star formation due to short-lived molecular clouds and rapid feedback
- Natural Downsizing in Hierarchical Galaxy Formation
- Black Holes on FIRE: Stellar Feedback Limits Early Feeding of Galactic Nuclei
- Recovering galaxy star formation and metallicity histories from spectra using VESPA
- The star formation main sequence and stellar mass assembly of galaxies in the Illustris simulation
- Dependence of Galaxy Quenching on Halo Mass and Distance from its Centre
- Simulations of Cosmic Chemical Enrichment
- A chronicle of galaxy mass assembly in the EAGLE simulation
- Morphology and star formation in IllustrisTNG: the build-up of spheroids and discs
- Observational constraints on the merger history of galaxies since : Probabilistic galaxy pair counts in the CANDELS fields
- The Correlation of Star Formation Quenching with Internal Galaxy Properties and Environment
- Non-parametric Star Formation History Reconstruction with Gaussian Processes I: Counting Major Episodes of Star Formation
- The baryon fraction of LambdaCDM haloes
- Why stellar feedback promotes disc formation in simulated galaxies
- The UV properties of E+A galaxies: constraints on feedback-driven quenching of star formation
- On the SFR-M main sequence archetypal star-formation history and analytical models
- AEGIS: New Evidence Linking Active Galactic Nuclei to the Quenching of Star Formation
- Stochastic modelling of star-formation histories II: star-formation variability from molecular clouds and gas inflow
- The frequency and nature of `cloud-cloud collisions' in galaxies
- Optical variability of AGN in the PTF/iPTF survey
- Hot gas in massive halos drives both mass quenching and environment quenching
- Gas accretion and galactic fountain flows in the Auriga cosmological simulations: angular momentum and metal re-distribution
- Anisotropic Thermal Conduction and the Cooling Flow Problem in Galaxy Clusters
- Stochastic modeling of star-formation histories I: the scatter of the star-forming main sequence
- Understanding the Structural Scaling Relations of Early-Type Galaxies
- Galaxy bulges and their black holes: a requirement for the quenching of star formation
- Massive Close Pairs Measure Rapid Galaxy Assembly in Mergers at High Redshift
- Interacting galaxies in the IllustrisTNG simulations -- II: Star formation in the post-merger stage
- The Slow Death (or Rebirth?) of Extended Star Formation in z~0.1 Green Valley Early-Type Galaxies
- The fate of disk galaxies in IllustrisTNG clusters
- The colors of satellite galaxies in the Illustris Simulation
- The Relationship Between Star-formation Activity and Galaxy Structural Properties in CANDELS and a Semi-analytic Model
- The effects of host galaxy properties on merging compact binaries detectable by LIGO
- The Milky Way Tomography with SDSS. V. Mapping the Dark Matter Halo
- Are star formation rates of galaxies bimodal?
- Star Formation Stochasticity Measured from the Distribution of Burst Indicators
- Delay Time Distributions of Type Ia Supernovae From Galaxy and Cosmic Star Formation Histories
- Detection of Enhanced Central Mass-to-Light Ratios in Low-Mass Early-Type Galaxies: Evidence for Black Holes?
- The Variability of Star Formation Rate in Galaxies: II. Power Spectrum Distribution on the Main Sequence
- The galaxy - halo connection in low mass halos
- Global enhancement and structure formation of the magnetic field in spiral galaxies
Cited by in corpus (72)
- The CAMELS project: Cosmology and Astrophysics with MachinE Learning Simulations
- On the Stellar Populations of Galaxies at z=9-11: The Growth of Metals and Stellar Mass at Early Times
- From dawn till disk: Milky Way's turbulent youth revealed by the APOGEE+Gaia data
- How Well Can We Measure the Stellar Mass of a Galaxy: The Impact of the Assumed Star Formation History Model in SED Fitting
- Fast, Slow, Early, Late: Quenching Massive Galaxies at z~0.8
- Ultra-faint dwarfs in a Milky Way context: Introducing the Mint Condition DC Justice League Simulations
- The time-scales probed by star formation rate indicators for realistic, bursty star formation histories from the FIRE simulations
- The THESAN project: Lyman-alpha emission and transmission during the Epoch of Reionization
- Quantifying scatter in galaxy formation at the lowest masses
- Feedback-Free Starbursts at Cosmic Dawn: Observable Predictions for JWST
- H-alpha emission in local galaxies: star formation, time variability and the diffuse ionized gas
- The THESAN project: ionizing escape fractions of reionization-era galaxies
- Recovering the star formation histories of recently-quenched galaxies: the impact of model and prior choices
- Mini-quenching of galaxies by bursty star formation
- Bursty star formation during the Cosmic Dawn driven by delayed stellar feedback
- The galaxy-halo connection of emission-line galaxies in IllustrisTNG
- Spectral Energy Distributions in Three Deep-Drilling Fields of the Vera C. Rubin Observatory Legacy Survey of Space and Time: Source Classification and Galaxy Properties
- The stellar metallicity gradients of Local Group dwarf galaxies
- : Learning Galaxy Properties from Merger Trees
- AGN Feedback in SDSS-IV MaNGA: AGNs have Suppressed Central Star Formation Rates
- Active galactic nucleus jet feedback in hydrostatic halos
- Outshining in the Spatially Resolved Analysis of a Strongly-Lensed Galaxy at z=6.072 with JWST NIRCam
- {\sc mirkwood:} Fast and Accurate SED Modeling Using Machine Learning
- IQ Collaboratory II: The Quiescent Fraction of Isolated, Low Mass Galaxies Across Simulations and Observations
- Density modulated star formation efficiency: implications for the observed abundance of ultra-violet luminous galaxies at z>10
- Exploring metallicity-dependent rates of Type Ia supernovae and their impact on galaxy formation
- Diffstar: A Fully Parametric Physical Model for Galaxy Assembly History
- Early Results From GLASS-JWST. XVII: Building the First Galaxies -- Chapter 1. Star Formation Histories at 5<z < 7
- Prospects for distinguishing galaxy evolution models with surveys at redshifts
- Explaining the scatter in the galaxy mass-metallicity relation with gas flows
- The THESAN-ZOOM project: Burst, quench, repeat -- unveiling the evolution of high-redshift galaxies along the star-forming main sequence
- The DESI PRObabilistic Value-Added Bright Galaxy Survey (PROVABGS) Mock Challenge
- Systematic biases in determining dust attenuation curves through galaxy SED fitting
- What is Important? Morphological Asymmetries are Useful Predictors of Star Formation Rates of Star-forming Galaxies in SDSS Stripe 82
- Stochastic Modelling of Star Formation Histories III. Constraints from Physically-Motivated Gaussian Processes
- Surrogate modelling the Baryonic Universe II: on forward modelling the colours of individual and populations of galaxies
- Mapping Accreted Stars in Early-Type Galaxies Across the Mass-Size Plane
- Reproducing the UVJ Color Distribution of Star-forming Galaxies at 0.5 < z < 2.5 with a Geometric Model of Dust Attenuation
- Reionization with Simba: How much does astrophysics matter in modeling cosmic reionization?
- A Dusty Dawn: Galactic Dust Buildup at
- Degeneracies between baryons and dark matter: the challenge of constraining the nature of dark matter with JWST
- How the Galaxy-Halo Connection Depends on Large-Scale Environment
- Flexible Models for Galaxy Star Formation Histories Both Shift and Scramble the Optical Color-M/L Relationship
- MusE GAs FLOw and Wind (MEGAFLOW) IX. The impact of gas flows on the relations between the mass, star formation rate and metallicity of galaxies
- Cosmic Sands: The Origin of Dusty, Star-forming Galaxies in the Epoch of Reionization
- Star Formation Variability as a Probe for the Baryon Cycle within Galaxies
- Behind the Spotlight: A systematic assessment of outshining using NIRCam medium-bands in the JADES Origins Field
- On the Origin of the High Star-Formation Efficiency in Massive Galaxies at Cosmic Dawn
- Star formation history and transition epoch of cluster galaxies based on the Horizon-AGN simulation
- Learning the Universe: Cosmological and Astrophysical Parameter Inference with Galaxy Luminosity Functions and Colours
- Probing bursty star formation by cross-correlating extragalactic background light and galaxy surveys
- Constraints on galactic outflows from the metallicity-stellar mass-SFR relation of EAGLE simulation and SDSS galaxies
- A stochastic model to reproduce the star-formation history of individual galaxies in hydrodynamic simulations
- On the variation in stellar -enhancements of star-forming galaxies in the EAGLE simulation
- Taking a Break at Cosmic Noon: Continuum-selected Low-mass Galaxies Require Long Burst Cycles
- Probing the earliest phases in the formation of massive galaxies with simulated HST+JWST imaging data from Illustris
- The Earliest Stage of Galactic Star Formation
- Relatively Fast and Reasonably Furious: Evidence for Increased Burstiness in Smaller Halos at Cosmic Dawn
- The slope and scatter of the star forming main sequence at z~5 : reconciling observations with simulations
- Dark Secrets of Baryons: Illuminating Dark Matter-Baryon Interactions with JWST
- The multi-component fitting to the star formation histories in the TNG simulation
- Flexible Simulation Based Inference for Galaxy Photometric Fitting with Synthesizer
- Sub-Gyr variability around the SFMS and its contribution to the scatter
- High-Redshift Galactic Outflows: Orientation Effects, Kinematics, and Metallicity in TNG50 and SERRA
- The Formation of Dwarf Galaxy Disks
- SF-R You Sure? The Conflicting Role of Star Formation Rates in Constraining the Evolution of Milky Way Analogues in Cosmological Simulations
- The Nature of High-Redshift Massive Quiescent Galaxies -- Searching for RUBIES-UDS-QG-z7 in FLARES
- pop-cosmos: Star formation over 12 Gyr from generative modelling of a deep infrared-selected galaxy catalogue
- Testing a New Star Formation History Model from Principal Component Analysis to Facilitate Spectral Synthesis Modeling
- Forged by Feedback: Stellar Properties of Brightest Group Galaxies in Cosmological Simulations
- Ergodicity of FIRE: star formation variations within and between simulated galaxies
- Extensive Lensing Survey of Optical and Near-Infrared Dark Objects (El Sonido): HST H-Faint Galaxies behind 101 Lensing Clusters