Physical properties of galaxies: toward a consistent comparison between hydrodynamical simulations and SDSS
arXiv:1602.06297 · doi:10.1093/mnras/stw1790
Abstract
We study the effects of applying observational techniques to derive the properties of simulated galaxies, with the aim of making an unbiased comparison between observations and simulations. For our study, we used fifteen galaxies simulated in a cosmological context using three different feedback and chemical enrichment models, and compared their z=0 properties with data from the Sloan Digital Sky Survey (SDSS). We show that the physical properties obtained directly from the simulations without post-processing can be very different to those obtained mimicking observational techniques. In order to provide simulators a way to reliably compare their galaxies with SDSS data, for each physical property that we studied - colours, magnitudes, gas and stellar metallicities, mean stellar ages and star formation rates - we give scaling relations that can be easily applied to the values extracted from the simulations. These scalings have in general a high correlation, except for the galaxy mean stellar ages and gas oxygen metallicities. Our simulated galaxies are photometrically similar to galaxies in the blue cloud/green valley, but in general they appear older, passive and with lower metal content compared to most of the spirals in SDSS. As a careful assessment of the agreement/disagreement with observations is the primary test of the baryonic physics implemented in hydrodynamical codes, our study shows that considering the observational biases in the derivation of the galaxies' properties is of fundamental importance to decide on the failure/success of a galaxy formation model.
19 pages, 18 figures, accepted for publication by MNRAS
References in corpus (37)
- Cosmic Star Formation History
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- The 2.5 m Telescope of the Sloan Digital Sky Survey
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Overview of the SDSS-IV MaNGA Survey: Mapping Nearby Galaxies at Apache Point Observatory
- UV Star Formation Rates in the Local Universe
- A simple model to interpret the ultraviolet, optical and infrared emission from galaxies
- The Mass-Metallicity Relation at z~2
- The Hubble Ultra Deep Field
- Galaxy Zoo 1 : Data Release of Morphological Classifications for nearly 900,000 galaxies
- The Illustris Simulation: Public Data Release
- Ages and metallicities of early-type galaxies in the SDSS: new insight into the physical origin of the colour-magnitude and the Mg2-sigmaV relations
- The Evolution of the Galaxy Stellar Mass Function at z= 4-8: A Steepening Low-mass-end Slope with Increasing Redshift
- Sunrise: Polychromatic Dust Radiative Transfer in Arbitrary Geometries
- Modelling the Pan-Spectral Energy Distribution of Starburst Galaxies: IV The Controlling Parameters of the Starburst SED
- (Star)bursts of FIRE: observational signatures of bursty star formation in galaxies
- CALIFA, the Calar Alto Legacy Integral Field Area survey. III. Second public data release
- Feedback and metal enrichment in cosmological SPH simulations - II. A multiphase model with supernova energy feedback
- The SAMI Galaxy Survey: Early Data Release
- Green Valley Galaxies
- Synthetic Galaxy Images and Spectra from the Illustris Simulation
- The Intrinsic Properties of SDSS Galaxies
- Should we believe the results of UV-mm galaxy SED modelling?
- Determining the stellar masses of submillimetre galaxies: the critical importance of star formation histories
- Project overview and update on WEAVE: the next generation wide-field spectroscopy facility for the William Herschel Telescope
- The VVDS-SWIRE-GALEX-CFHTLS surveys: Physical properties of galaxies at z below 1.2 from photometric data
- The distribution of gas in the Local Group from constrained cosmological simulations: the case for Andromeda and the Milky Way galaxies
- The Star Formation and Extinction Co-Evolution of UV-Selected Galaxies over 0.05<z<1.2
- Abundance patterns in early-type galaxies: is there a 'knee' in the [Fe/H] vs. [alpha/Fe] relation?
- Deriving star formation histories from photometry using energy balance spectral energy distribution modelling
- Nature or nurture? Clues from the distribution of specific star formation rates in SDSS galaxies
- Scalelength of disc galaxies
- Effects of Inclination on Measuring Velocity Dispersion and Implications for Black Holes
- Biases and systematics in the observational derivation of galaxy properties: comparing different techniques on synthetic observations of simulated galaxies
- Where do galaxies end? Comparing measurement techniques of hydrodynamic-simulation galaxies' integrated properties
- The Milky Way and Andromeda galaxies in a constrained hydrodynamical simulation: morphological evolution
- The Effect of Environment on Milky Way-mass galaxies in a Constrained Simulation of the Local Group
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- First results from the IllustrisTNG simulations: the galaxy color bimodality
- First results from the IllustrisTNG simulations: A tale of two elements -- chemical evolution of magnesium and europium
- De Re Metallica: The cosmic chemical evolution of galaxies
- The star-formation activity of IllustrisTNG galaxies: main sequence, UVJ diagram, quenched fractions, and systematics
- Recovering the star formation histories of recently-quenched galaxies: the impact of model and prior choices
- Horizon-AGN virtual observatory - 1. SED-fitting performance and forecasts for future imaging surveys
- Aperture-free star formation rate of SDSS star-forming galaxies
- Introducing galactic structure finder: the multiple stellar kinematic structures of a simulated Milky Way mass galaxy
- Infrared luminosity functions and dust mass functions in the EAGLE simulation
- Comparison of Observed Galaxy Properties with Semianalytic Model Predictions using Machine Learning
- The SELGIFS data challenge: generating synthetic observations of CALIFA galaxies from hydrodynamical simulations
- FORECAST: a flexible software to forward model cosmological hydrodynamical simulations mimicking real observations
- The SAMI Galaxy Survey: understanding observations of large-scale outflows at low redshift with EAGLE simulations
- Precision Pollution - The effects of enrichment yields and timing on galactic chemical evolution
- The neutron-capture and alpha-elements abundance ratios scatter in old stellar populations. Cosmological simulations of the stellar halo
- The Stellar Chemical Abundances of Simulated Massive Galaxies at