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
P. Noterdaeme, S. Balashev, J.-K. Krogager, P. Laursen, R. Srianand,, N. Gupta, P. Petitjean, J. P. U. Fynbo

TL;DR
This study presents detailed spectroscopic observations of a high-redshift quasar revealing a complex, multi-phase outflow with nuclear and galactic-scale components, including ionized, molecular, and neutral gas, driven by the active galactic nucleus.
Contribution
It provides the first detailed characterization of a high-redshift quasar outflow across multiple gas phases and spatial scales, linking nuclear activity to galactic-scale feedback.
Findings
Detection of nuclear and galactic-scale outflows in ionized and molecular gas.
Identification of cold H2 gas at ~10 kpc from the nucleus with high density.
Modeling of Ly-alpha profile consistent with AGN-driven multi-phase outflow.
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…
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