Disentangling AGN and Star Formation Activity at High Redshift Using Hubble Space Telescope Grism Spectroscopy
arXiv:1605.03187 · doi:10.3847/0004-637X/826/2/172
Abstract
Differentiating between active galactic nuclei (AGN) activity and star formation in z ~ 2 galaxies is difficult because traditional methods, such as line ratio diagnostics, change with redshift while multi-wavelength methods (X-ray, radio, IR) are sensitive to only the brightest AGN. We have developed a new method for spatially resolving emission lines in HST/WFC3 G141 grism spectra and quantifying AGN activity through the spatial gradient of the [O III]/H line ratio. Through detailed simulations, we show that our novel line-ratio gradient approach identifies ~ sim 40% more low-mass and obscured AGN than obtained by classical methods. Based on our simulations, we developed a relationship that maps stellar mass, star formation rate, and measured [O III]/H gradient to AGN Eddington ratio. We apply our technique to previously studied stacked samples of galaxies at z ~2 and find that our results are consistent with these studies. Using this gradient method will also be able to inform other galaxy evolution science, such as inside-out quenching and metallicity gradients, and will be widely applicable to future spatially resolved JWST data.
33 pages, 13 figures, accepted to ApJ
References in corpus (25)
- Cosmic Star Formation History
- 3D-HST+CANDELS: The Evolution of the Galaxy Size-Mass Distribution since
- The Mass-Metallicity Relation at z~2
- The MAPPINGS III Library of Fast Radiative Shock Models
- Strong Nebular Line Ratios in the Spectra of z~2-3 Star-forming Galaxies: First Results from KBSS-MOSFIRE
- The KMOS^3D Survey: design, first results, and the evolution of galaxy kinematics from 0.7<z<2.7
- The MOSFIRE Deep Evolution Field (MOSDEF) Survey: Rest-Frame Optical Spectroscopy for ~1500 H-Selected Galaxies at 1.37 < z < 3.8
- Obscuration-dependent evolution of Active Galactic Nuclei
- The MOSDEF Survey: Mass, Metallicity, and Star-formation Rate at z~2.3
- Where stars form: inside-out growth and coherent star formation from HST Halpha maps of 2676 galaxies across the main sequence at z~1
- New insights into the stellar content and physical conditions of star-forming galaxies at z = 2-3 from spectral modelling
- Ultraviolet Emission Lines in Young Low Mass Galaxies at z~2: Physical Properties and Implications for Studies at z>7
- Spectroscopic detections of CIII]1909 at z~6-7: A new probe of early star forming galaxies and cosmic reionisation
- AGN Emission Line Diagnostics and the Mass-Metallicity Relation up to Redshift z~2: the Impact of Selection Effects and Evolution
- The MOSDEF Survey: Optical AGN Diagnostics at z~2.3
- The Biases of Optical Line-Ratio Selection for Active Galactic Nuclei, and the Intrinsic Relationship between Black Hole Accretion and Galaxy Star Formation
- Size and properties of the narrow-line region in Seyfert-1 galaxies from spatially-resolved optical spectroscopy
- Black Holes at the Centers of Nearby Dwarf Galaxies
- Spatially-resolved dust maps from Balmer decrements in galaxies at z~1.4
- The Origin of Line Emission in Massive z~2.3 Galaxies: Evidence for Cosmic Downsizing of AGN Host Galaxies
- A rise in the ionizing photons in star-forming galaxies over the past 5 billion years
- HST Emission Line Galaxies at z ~ 2: The Mystery of Neon
- Young, Star-forming Galaxies and their local Counterparts: the Evolving Relationship of Mass-SFR-Metallicity since z ~ 2.1
- Resolved Star Formation on Sub-galactic Scales in a Merger at z=1.7
- No More Active Galactic Nuclei in Clumpy Disks Than in Smooth Galaxies at z~2 in CANDELS / 3D-HST