The impact of AGN-driven winds on physical and observable galaxy sizes
arXiv:2303.12858 · doi:10.1093/mnras/stad1528
Abstract
Without AGN feedback, simulated massive, star-forming galaxies become too compact relative to observed galaxies at z<2. In this paper, we perform high-resolution re-simulations of a massive (M_star~10^11 M_sol) galaxy at z~2.3, drawn from the Feedback in Realistic Environments (FIRE) project. In the simulation without AGN feedback, the galaxy experiences a rapid starburst and shrinking of its half-mass radius. We experiment with driving mechanical AGN winds, using a state-of-the-art hyper-Lagrangian refinement technique to increase particle resolution. These winds reduce the gas surface density in the inner regions of the galaxy, suppressing the compact starburst and maintaining an approximately constant half-mass radius. Using radiative transfer, we study the impact of AGN feedback on the magnitude and extent of the multi-wavelength continuum emission. When AGN winds are included, the suppression of the compact, dusty starburst results in lowered flux at FIR wavelengths (due to decreased star formation) but increased flux at optical-to-near-IR wavelengths (due to decreased dust attenuation, in spite of the lowered star formation rate), relative to the case without AGN winds. The FIR half-light radius decreases from ~1 kpc to ~0.1 kpc in <40 Myr when AGN winds are not included, but increases to ~2 kpc when they are. Interestingly, the half-light radius at optical-NIR wavelengths remains approximately constant over 35 Myr, for simulations with and without AGN winds. In the case without winds, this occurs despite the rapid compaction, and is due to heavy dust obscuration in the inner regions of the galaxy. This work highlights the importance of forward-modelling when comparing simulated and observed galaxy populations.
14 pages, 10 figures. Accepted for publication in MNRAS
References in corpus (38)
- Cosmic Star Formation History
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- 3D-HST+CANDELS: The Evolution of the Galaxy Size-Mass Distribution since
- Properties of galaxies reproduced by a hydrodynamic simulation
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- The Co-Evolution of Galaxies and Supermassive Black Holes: Insights from Surveys of the Contemporary Universe
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- 3D-HST WFC3-selected Photometric Catalogs in the Five CANDELS/3D-HST Fields: Photometry, Photometric Redshifts and Stellar Masses
- Massive molecular outflows and negative feedback in ULIRGs observed by Herschel-PACS
- Size evolution of the most massive galaxies at 1.7<z<3 from GOODS NICMOS survey imaging
- A synthesis model for AGN evolution: supermassive black holes growth and feedback modes
- Kiloparsec-scale dust disks in high-redshift luminous submillimeter galaxies
- SKIRT: an Advanced Dust Radiative Transfer Code with a User-Friendly Architecture
- Black Holes on FIRE: Stellar Feedback Limits Early Feeding of Galactic Nuclei
- The dramatic size evolution of elliptical galaxies and the quasar feedback
- Feedback from Active Galactic Nuclei: Energy- versus momentum-driving
- The origin of fast molecular outflows in quasars: molecule formation in AGN-driven galactic winds
- Observational Signatures of Galactic Winds Powered by Active Galactic Nuclei
- Half-mass radii for ~7,000 galaxies at 1.0 < z < 2.5: most of the evolution in the mass-size relation is due to color gradients
- FIRE-3: Updated Stellar Evolution Models, Yields, & Microphysics and Fitting Functions for Applications in Galaxy Simulations
- The influence of the environmental history on quenching star formation in a CDM universe
- Predictions for the spatial distribution of the dust continuum emission in 1<z<5 star-forming galaxies
- Which AGN Jets Quench Star Formation in Massive Galaxies?
- 3-D gas-phase elemental abundances across the formation histories of Milky Way-mass galaxies in the FIRE simulations: initial conditions for chemical tagging
- Introducing piXedfit -- a Spectral Energy Distribution Fitting Code Designed for Resolved Sources
- Are star formation rates of galaxies bimodal?
- Realistic mock observations of the sizes and stellar mass surface densities of massive galaxies in FIRE-2 zoom-in simulations
- Resolving a dusty, star-forming SHiZELS galaxy at z=2.2 with HST, ALMA and SINFONI on kiloparsec scales
- Reconstructing the Assembly of Massive Galaxies. I: The Importance of the Progenitor Effect in the Observed Properties of Quiescent Galaxies at
- A combined VANDELS and LEGA-C study: the evolution of quiescent galaxy size, stellar mass and age from to
- Dust-Enshrouded AGN can Dominate Host-Galaxy-Scale Cold-Dust Emission
- Stellar feedback-regulated black hole growth: driving factors from nuclear to halo scales
- Dust temperature uncertainties hamper the inference of dust and molecular gas masses from the dust continuum emission of quiescent high-redshift galaxies
- Dissecting Nearby Galaxies with piXedfit: I. Spatially Resolved Properties of Stars, Dust, and Gas as Revealed by Panchromatic SED Fitting
- The galaxy-halo size relation of low-mass galaxies in FIRE
- Predicting sub-millimeter flux densities from global galaxy properties
- Dissecting Nearby Galaxies with piXedfit: II. Spatially Resolved Scaling Relations Among Stars, Dust, and Gas
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- The LOFAR Two-metre Sky Survey: the radio view of the cosmic star formation history
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- An ALMA Spectroscopic Survey of the Brightest Submillimeter Galaxies in the SCUBA-2-COSMOS Field (AS2COSPEC): Physical Properties of z=2-5 Ultra- and Hyperluminous Infrared Galaxies
- On the origin of star formation quenching in massive galaxies at in the cosmological simulations IllustrisTNG
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- The JWST Emission Line Survey (JELS): Extending rest-optical narrow-band emission line selection into the Epoch of Reionization
- Diverse dark matter profiles in FIRE dwarfs: black holes, cosmic rays and the cusp-core enigma
- Physical characterization of the FeLoBAL outflow in SDSS J0932+0840: Analysis of VLT/UVES observations
- Galaxy and halo properties around cosmic filaments from Sloan Digital Sky Survey Data Release 7 and the ELUCID simulation
- The Connection between Dusty Star-Forming Galaxies and the First Massive Quenched Galaxies