Down-the-barrel observations of a multiphase quasar outflow at high redshift: VLT/X-shooter spectroscopy of the proximate molecular absorber at z=2.631 towards SDSS J001514+184212
arXiv:2012.02487 · doi:10.1051/0004-6361/202038877
Abstract
We present UV to NIR spectroscopic observations of the quasar J0015+1842 and its proximate molecular absorber at z=2.631. The [OIII] emission line of the quasar is composed of a broad (FWHM~1600 km/s), spatially-unresolved component, blueshifted by ~600 km/s from a narrow, spatially-resolved component (FWHM~650 km/s). The wide, blueshifted, unresolved component is consistent with the presence of outflowing gas in the nuclear region. The narrow component can be further decomposed into a blue and a red blob with velocity width of several hundred km/s each, seen ~5 pkpc on opposite spatial locations from the nuclear emission, indicating outflows over galactic scales. The presence of ionised gas over kpc-scales is also seen from a weak CIV emission component, detected in the trough of a saturated CIV absorption that removes the strong nuclear emission from the quasar. Towards the nuclear emission, we observe absorption lines from atomic species in various ionisation and excitation stages and confirm the presence of strong H2 lines. The overall absorption profile is very wide, spread over ~600 km/s, roughly matching in velocities the blue narrow [OIII] blob. From detailed investigation of the chemical and physical conditions in the absorbing gas, we infer densities of about nH ~ 10^4-10^5 cm^-3 in the cold (T~100 K) H2-bearing gas, which we find to be located at ~10 kpc distances from the central UV source. We conjecture that we are witnessing different manifestations of a same AGN-driven multi-phase outflow, where approaching gas is intercepted by the line of sight to the nucleus. We corroborate this picture by modelling the scattering of Ly-a photons from the central source through the outflowing gas, reproducing the peculiar Ly-a absorption-emission profile, with a damped Ly-a absorption in which red-peaked, spatially offset and extended Ly-a emission is seen. [abridged]
Minor updates to match the published version in Astronomy and Astrophysics
References in corpus (33)
- The MUSE second-generation VLT instrument
- Molecfit: A general tool for telluric absorption correction. I. Method and application to ESO instruments
- An Analysis of the Shapes of Interstellar Extinction Curves. V. The IR-Through-UV Curve Morphology
- Molecfit: A general tool for telluric absorption correction II. Quantitative evaluation on ESO-VLT X-Shooter spectra
- Wind from the black-hole accretion disk driving a molecular outflow in an active galaxy
- Velocity-Metallicity Correlation for high-z DLA Galaxies: Evidence for a Mass-Metallicity Relation?
- HI-to-H2 Transitions and H I Column Densities in Galaxy Star-Forming Regions
- Quasar-Mode Feedback in Nearby Type 1 Quasars: Ubiquitous Kiloparsec-Scale Outflows and Correlations with Black Hole Properties
- The origin of fast molecular outflows in quasars: molecule formation in AGN-driven galactic winds
- The flux ratio of the [OIII] 5007,4959 lines in AGN: Comparison with theoretical calculations
- How to quench a galaxy
- Quasar Feedback in the Ultraluminous Infrared Galaxy F11119+3257: Connecting the Accretion Disk Wind with the Large-Scale Molecular Outflow
- Inspiraling Halo Accretion Mapped in Lyman- Emission around a Quasar
- Lyman alpha Radiative Transfer in Cosmological Simulations using Adaptive Mesh Refinement
- Fast cold gas in hot AGN outflows
- Sizes and Kinematics of Extended Narrow-Line Regions in Luminous Obscured AGN Selected by Broadband Images
- C IV absorption in damped and sub-damped Lyman-alpha systems: correlations with metallicity and implications for galactic winds at z~2-3
- Discovery of a Perseus-like cloud in the early Universe: HI-to-H2 transition, carbon monoxide and small dust grains at zabs=2.53 towards the quasar J0000+0048
- Excitation mechanisms in newly discovered H2-bearing Damped Lyman-alpha clouds: systems with low molecular fractions
- CO-dark molecular gas at high redshift: very large H content and high pressure in a low metallicity damped Lyman-alpha system
- The SDSS-DR5 Survey for Proximate Damped Lya Systems
- Modeling Lyman- spectra of the MUSE-Wide survey
- VLT/UVES observations of extremely strong intervening damped Lyman-alpha systems: Molecular hydrogen and excited carbon, oxygen and silicon at log N(HI)=22.4
- Kinematics of CIV and [OIII] emission in luminous high-redshift quasars
- X-shooter observations of strong H-bearing DLAs at high redshift
- AGN feedback on molecular gas reservoirs in quasars at 2.4
- Unification scheme and the distribution of neutral gas in compact radio sources
- Probing the Physical Conditions of Atomic Gas at High Redshift
- Directional Radiation and Photodissociation Regions in Molecular Hydrogen Clouds
- Proximate Molecular Quasar Absorbers: Excess of damped H2 systems at zabs~zQSO in SDSS DR14
- Neutral chlorine and molecular hydrogen at high redshift
- Probing the AGN Unification Model at redshift z 3 with MUSE observations of giant Ly nebulae
- Charge exchange emission and cold clumps in multi-phase galactic outflows
Cited by in corpus (7)
- Proximate molecular quasar absorbers: Chemical enrichment and kinematics of the neutral gas
- HI gas playing hide-and-seek around a powerful FRI-type quasar at z2.1
- Neutral carbon in diffuse interstellar medium: abundance matching with H2 for DLAs at high redshifts
- Extremely strong DLAs at high redshift: Gas cooling and H formation
- Molecular hydrogen in absorption at high redshifts. Science cases for CUBES
- Low-ionization iron-rich Broad Absorption-Line Quasar SDSS J1652+2650: Physical conditions in the ejected gas from excited FeII and metastable HeI
- The CUBES Science Case