Revealing the Gas Recycling in the Circumgalactic Medium (CGM) Utilizing a Luminous Ly Nebula Around a Type-II Quasar at z=2.6 with the Keck Cosmic Web Imager (KCWI)
arXiv:2307.14224 · doi:10.3847/1538-4357/acd760
Abstract
How galaxies acquire material from the circumgalactic medium (CGM) is a key question in galaxy evolution. Recent observations and simulations show that gas recycling could be an important avenue for star formation. This paper presents Keck Cosmic Web Imager (KCWI) integral field unit spectroscopic observations on a type-II quasar, Q1517+0055 at z = 2.65, a pilot study of our Ly nebulae sample at . We revealed diffuse emission of the Ly 1216, HeII 1640, and CIV 1549 on the projected physical scale of 122 kpc, 45 kpc, and 79 kpc, respectively. The total Ly luminosity is L = erg s. The line ratio diagnostics shows that HeII/Ly 0.08 and CIV/Ly 0.28, consistent with the photoionization including recombination and photon pumping. We also identify the associated HI and CIV absorption from the spectra. By fitting the spectra, we derive both the column density and the velocity. We find that the velocity profile from both the absorption and the HeII emission exhibit increasing trends. Moreover, both the line ratio diagnostic from the emission and the column density ratio from the absorption confirm that the cool gas metallicity is . From detailed modeling and estimation, gas recycling might be a more plausible interpretation compared with the scenario of a powerful outflow.
Published in ApJ, 21 July 2023 (accepted version), 18 pages, 10 figures, and seven tables in the main text
References in corpus (25)
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- Kiloparsec-scale outflows are prevalent among luminous AGN: outflows and feedback in the context of the overall AGN population
- Moving mesh cosmology: tracing cosmological gas accretion
- Four phases of angular-momentum buildup in high-z galaxies: from cosmic-web streams through an extended ring to disc and bulge
- Quasars Probing Quasars VII. The Pinnacle of the Cool Circumgalactic Medium Surrounds Massive z~2 Galaxies
- Evolution of the Cool Gas in the Circumgalactic Medium (CGM) of Massive Halos -- A Keck Cosmic Web Imager (KCWI) Survey of Ly Emission around QSOs at
- The large and small scale properties of the intergalactic gas in the Slug Ly-alpha nebula revealed by MUSE HeII emission observations
- Inspiraling Halo Accretion Mapped in Lyman- Emission around a Quasar
- A 100-kiloparsec wind feeding the circumgalactic medium of a massive compact galaxy
- The Impact of Galactic Feedback on the Circumgalactic Medium
- MUSE Analysis of Gas around Galaxies (MAGG) -- III: The gas and galaxy environment of z = 3-4.5 quasars
- The Lyman-alpha glow of gas falling into the dark matter halo of a z=3 galaxy
- A Deep Narrowband Imaging Search for CIV and He II Emission from Ly Blobs
- Simulations of AGN Driven Galactic Outflow Morphology and Content
- Inspiraling streams of enriched gas observed around a massive galaxy 11 billion years ago
- Evidence for quasar fast outflows being accelerated at the scale of tens of parsecs
- From large-scale environment to CGM angular momentum to star forming activities -- I: star-forming galaxies
- Cool circumgalactic gas of passive galaxies from cosmological inflow
- The cold circumgalactic environment of MAMMOTH-I: dynamically cold gas in the core of an Enormous Ly-alpha Nebula
- Radiative Transfer in Lyα Nebulae: I. Modeling a Continuous or Clumpy Spherical Halo with a Central Source
- Mapping the "invisible" circumgalactic medium around a z 4.5 radio galaxy with MUSE
- A Long Stream of Metal-Poor Cool Gas around a Massive Starburst Galaxy at z = 2.67
- MUSE unravels the ionisation and origin of metal enriched absorbers in the gas halo of a z = 2.92 radio galaxy
- Properties of the circumgalactic medium in simulations compared to observations