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Host galaxies of high-redshift quasars: supermassive black hole growth and feedback

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arxiv 2107.05638 v1 pith:CWTJZZKV submitted 2021-07-12 astro-ph.GA astro-ph.CO

classification astro-ph.GAastro-ph.CO
keywords feedbackgalaxiesquasaraccretiongrowthhostmassodot
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abstract

The properties of quasar-host galaxies might be determined by the growth and feedback of their supermassive (SMBH, $10^{8-10}$ M$_{\odot}$) black holes. We investigate such connection with a suite of cosmological simulations of massive (halo mass $\approx 10^{12}$ M$_{\odot}$) galaxies at $z\simeq 6$ which include a detailed sub-grid multiphase gas and accretion model. BH seeds of initial mass $10^5$ M$_{\odot}$ grow mostly by gas accretion, and become SMBH by $z=6$ setting on the observed $M_{\rm BH} - M_{\star}$ relation without the need for a boost factor. Although quasar feedback crucially controls the SMBH growth, its impact on the properties of the host galaxy at $z=6$ is negligible. In our model, quasar activity can both quench (via gas heating) or enhance (by ISM over-pressurization) star formation. However, we find that the star formation history is insensitive to such modulation as it is largely dominated, at least at $z>6$, by cold gas accretion from the environment that cannot be hindered by the quasar energy deposition. Although quasar-driven outflows can achieve velocities $> 1000~\rm km~s^{-1}$, only $\approx 4$% of the outflowing gas mass can actually escape from the host galaxy. These findings are only loosely constrained by available data, but can guide observational campaigns searching for signatures of quasar feedback in early galaxies.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Red, hot, and very metal poor: extreme properties of a massive accreting black hole in the first 500 Myr

    astro-ph.GA 2024-12 conditional novelty 6.0 of 10

    A compact galaxy at z=8.63 hosts a 100-million-solar-mass accreting black hole with broad H-beta, high-ionization UV lines, and very low metallicity.

  2. Characterizing the Properties and Constitution of Compact Objects in Gravitational-Wave Binaries

    gr-qc 2024-11 conditional novelty 5.0 of 10

    Tidal heating imprints from black hole horizons can be captured by two effective parameters and modeled through merger, offering a future test to distinguish black holes from exotic horizonless objects.

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