Empirical Dust Attenuation Model Leads to More Realistic UVJ Diagram for TNG100 Galaxies
arXiv:2204.06449 · doi:10.3847/1538-4357/ac9477
Abstract
Dust attenuation varies substantially from galaxy to galaxy and as of yet cannot be reproduced from first principles in theoretical models. In Nagaraj et al. (2022), we developed the first Bayesian population model of dust attenuation as a function of stellar population properties and projected galaxy shape, built on spectral energy distribution (SED) fits of nearly 30,000 galaxies in the 3D-HST grism survey with broadband photometric coverage from the rest-frame UV to IR. In this paper, we apply the model to galaxies from the large-volume cosmological simulation TNG100. We produce a UVJ diagram and compare it with one obtained in previous work by applying approximate radiative transfer to the simulated galaxies. We find that the UVJ diagram based on our empirical model is in better agreement with observations than the previous effort, especially in the number density of dusty star forming galaxies. We also construct the intrinsic dust-free UVJ diagram for TNG and 3D-HST galaxies at z ~ 1, finding qualitative agreement but residual differences at the 10-20% level. These differences can be largely attributed to the finding that TNG galaxies have, on average, 29% younger stellar populations and 0.28 dex higher metallicities than observed galaxies.
12 pages, 5 figures, submitted to ApJ
References in corpus (21)
- 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
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- Introducing the Illustris Project: the evolution of galaxy populations across cosmic time
- 3D-HST WFC3-selected Photometric Catalogs in the Five CANDELS/3D-HST Fields: Photometry, Photometric Redshifts and Stellar Masses
- Detection of quiescent galaxies in a bicolor sequence from z=0-2
- Stellar Population Inference with Prospector
- GALEX-SDSS-WISE Legacy Catalog (GSWLC): Star Formation Rates, Stellar Masses and Dust Attenuations of 700,000 Low-redshift Galaxies
- What do we learn from IRAC observations of galaxies at 2 < z < 3.5?
- Stellar masses from the CANDELS survey: the GOODS-South and UDS fields
- Exoplanet population inference and the abundance of Earth analogs from noisy, incomplete catalogs
- Morphology and star formation in IllustrisTNG: the build-up of spheroids and discs
- Geometry of Star-Forming Galaxies from SDSS, 3D-HST and CANDELS
- How Well Can We Measure the Stellar Mass of a Galaxy: The Impact of the Assumed Star Formation History Model in SED Fitting
- Predicting Quiescence: The Dependence of Specific Star Formation Rate on Galaxy Size and Central Density at 0.5<z<2.5
- Beyond UVJ: More Efficient Selection of Quiescent Galaxies With UV / Mid-IR Fluxes
- Quenching and the UVJ diagram in the SIMBA cosmological simulation
- A Bayesian Population Model for the Observed Dust Attenuation in Galaxies
- How Well Can We Measure Galaxy Dust Attenuation Curves? The Impact of the Assumed Star-Dust Geometry Model in SED Fitting
- Reproducing the UVJ Color Distribution of Star-forming Galaxies at 0.5 < z < 2.5 with a Geometric Model of Dust Attenuation
- Towards precise galaxy evolution: a comparison between spectral indices of galaxies in the IllustrisTNG simulation and the LEGA-C survey
- Galaxies of the Universe. I. Grism-Selected Rest-Frame Optical Emission Line Galaxies
Cited by in corpus (4)
- More is better: Strong constraints on the stellar properties of LEGA-C z ~ 1 galaxies with Prospector
- The mass-dependent UVJ diagram at cosmic noon: A challenge for galaxy evolution models and dust radiative transfer
- Why do semi-analytic models predict higher scatter in the stellar mass-halo mass relation than cosmological hydrodynamic simulations?
- pop-cosmos: Insights from generative modeling of a deep, infrared-selected galaxy population