Inspiraling Halo Accretion Mapped in Lyman-$\alpha$ Emission around a $z\sim3$ Quasar
Fabrizio Arrigoni Battaia (1), J. Xavier Prochaska (2,3), Joseph F., Hennawi (4,5), Aura Obreja (6,7), Tobias Buck (4), Sebastiano Cantalupo (8),, Aaron A. Dutton (7), Andrea V. Macci\`o (7,4) ((1) ESO, Garching, (2) UCO,, (3) UC, Santa Cruz, (4) MPIA, (5) UC, Santa Barbara

TL;DR
This study reports the discovery of an enormous Lyα nebula around a high-redshift quasar, revealing complex gas dynamics suggestive of inspiraling accretion, and demonstrates the power of MUSE in probing galaxy assembly processes.
Contribution
First detailed mapping of a large Lyα nebula around a $z extasciitilde3$ quasar showing coherent rotation-like gas motions indicative of inspiraling accretion.
Findings
Detected a 297 kpc Lyα nebula with high surface brightness.
Mapped a large-scale velocity pattern consistent with inspiraling gas.
Identified additional embedded sources, including Lyα emitters and AGN.
Abstract
In an effort to search for Ly emission from circum- and intergalactic gas on scales of hundreds of kpc around quasars, and thus characterise the physical properties of the gas in emission, we have initiated an extensive fast-survey with the Multi Unit Spectroscopic Explorer (MUSE): Quasar Snapshot Observations with MUse: Search for Extended Ultraviolet eMission (QSO MUSEUM). In this work, we report the discovery of an enormous Ly nebula (ELAN) around the quasar SDSS~J102009.99+104002.7 at , which we followed-up with deeper MUSE observations. This ELAN spans projected kpc, has an average Ly surface brightness erg s cm arcsec (within the isophote), and is associated with an additional four, previously unknown embedded sources: two Ly emitters and two…
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