3D tomography of the giant Ly$\alpha$ nebulae of $z$$\approx$3--5 radio-loud AGN
Wuji Wang, Dominika Wylezalek, Jo\"el Vernet, Carlos De Breuck, Bitten, Gullberg, Mark Swinbank, Montserrat Villar Mart\'in, Matthew Lehnert,, Guillaume Drouart, Fabrizio Arrigoni Battaia, Andrew Humphrey, Ga\"el Noirot,, Sthabile Kolwa, Nick Seymour, Patricio Lagos

TL;DR
This study uses MUSE observations to analyze the structure, kinematics, and morphology of Lyα nebulae around high-redshift radio galaxies, revealing the influence of AGN orientation and outflows on nebular properties.
Contribution
It provides the first detailed absorption-corrected maps of Lyα nebulae around HzRGs, highlighting the impact of AGN orientation and jet-driven outflows on nebula morphology and kinematics.
Findings
Intrinsic SB profiles are exponential and power-law.
HzRG nebulae are brighter and more asymmetric than other quasars.
Evidence of jet-driven outflows in some nebulae.
Abstract
Ly emission nebulae are ubiquitous around high-z galaxies and are tracers of the gaseous environment on scales out to >100 kpc. High-z radio galaxies (HzRGs, type-2 radio-loud quasars) host large scale nebulae observed in the ionised gas differ from those seen in other types of high-z quasars. In this work, we exploit MUSE observations of Lya nebulae around eight HzRGs (). All the HzRGs have large scale Lya emission nebulae with seven of them extended over 100 kpc at the observed surface brightness (SB) limit. Because the emission line profiles are significantly affected by neutral hydrogen absorbers across the entire nebulae, we perform an absorption correction to infer maps of the intrinsic Lya SB, central velocity and velocity width, all at the last scattering surface of the observed Lya photons. We find: (i) The intrinsic SB radial profiles can be described by an…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Astrophysics and Cosmic Phenomena
