SUPER VIII. Fast and Furious at $z\sim2$: obscured type-2 active nuclei host faster ionised winds than type-1 systems
G. Tozzi, G. Cresci, M. Perna, V. Mainieri, F. Mannucci, A. Marconi,, D. Kakkad, A. Marasco, M. Brusa, E. Bertola, M. Bischetti, S. Carniani, C., Cicone, C. Circosta, F. Fiore, C. Feruglio, C. M. Harrison, I. Lamperti, H., Netzer, E. Piconcelli, A. Puglisi, J. Scholtz, G. Vietri

TL;DR
This study uses high-resolution spectroscopy to reveal that obscured type-2 AGN at z~2 host faster ionised winds than type-1 AGN, supporting an evolutionary model of AGN obscuration and feedback during cosmic peak activity.
Contribution
It provides the first spatially resolved comparison of ionised outflows in type-2 and type-1 AGN at cosmic noon, highlighting differences in wind speeds and implications for AGN evolution.
Findings
Type-2 AGN host faster ionised outflows than type-1 AGN.
Outflows extend on 2-4 kpc scales, often spatially resolved.
Obscured AGN may be in a 'blow-out' phase, driving large-scale winds.
Abstract
We present spatially resolved VLT/SINFONI spectroscopy with adaptive optics of type-2 active galactic nuclei (AGN) from the SINFONI Survey for Unveiling the Physics and Effect of Radiative feedback (SUPER), which targeted X-ray bright ( erg s) AGN at Cosmic Noon (). Our analysis of the rest-frame optical spectra unveils ionised outflows in all seven examined targets, as traced via [OIII]5007 line emission, moving at km s. In six objects these outflows are clearly spatially resolved and extend on 2-4 kpc scales, whereas marginally resolved in the remaining one. Interestingly, these SUPER type-2 AGN are all heavily obscured sources ( cm) and host faster ionised outflows than their type-1 counterparts within the same range of bolometric luminosity ( erg…
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