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Abstract / Description of output
The extent of black hole growth during different galaxy evolution phases and the connection between galaxy compactness and AGN activity remain poorly understood. We use Hubble Space Telescope imaging of the CANDELS fields to identify star-forming and quiescent galaxies at z=0.5-3 in both compact and extended phases and use Chandra X-ray imaging to measure the distribution of AGN accretion rates and track black hole growth within these galaxies. Accounting for the impact of AGN light changes ~20% of the X-ray sources from compact to extended galaxy classifications. We find that ~10-25% of compact star-forming galaxies host an AGN, a mild enhancement (by a factor ~2) compared to extended star-forming galaxies or compact quiescent galaxies of equivalent stellar mass and redshift. However, AGN are not ubiquitous in compact star-forming galaxies and this is not the evolutionary phase, given its relatively short timescale, where the bulk of black hole mass growth takes place. Conversely, we measure the highest AGN fractions (~10-30%) within the relatively rare population of extended quiescent galaxies. For massive galaxies that quench at early cosmic epochs, substantial black hole growth in this extended phase is crucial to produce the elevated black hole mass-to-galaxy stellar mass scaling relation observed for quiescent galaxies at z~0. We also show that AGN fraction increases with compactness in star-forming galaxies and decreases in quiescent galaxies within both the compact and extended sub-populations, demonstrating that AGN activity depends closely on the structural properties of galaxies.
Original language | English |
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Pages (from-to) | 4860-4889 |
Number of pages | 30 |
Journal | Monthly Notices of the Royal Astronomical Society |
Volume | 515 |
Issue number | 4 |
Early online date | 1 Aug 2022 |
DOIs | |
Publication status | Published - 1 Oct 2022 |
Keywords / Materials (for Non-textual outputs)
- astro-ph.GA
- astro-ph.HE
- galaxies: active
- galaxies: evolution
- X-rays: galaxies
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Dive into the research topics of 'AGN accretion and black hole growth across compact and extended galaxy evolution phases'. Together they form a unique fingerprint.Projects
- 1 Active
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Connecting the lifecycles of galaxies and their central black holes
1/11/20 → 31/10/24
Project: Research