Bipolar ionization cones in the Extended Narrow-Line Region of nearby QSO2s
Thaisa Storchi-Bergmann, Bruno Dall'Agnol de Oliveira, Luis Felipe, Longo Micchi, Henrique Roberto Schmitt, Travis Cody Fischer, Steven Kraemer,, Michael Crenshaw, Peter Maksym, Martin Elvis, Giuseppina Fabbiano, Luis, Colina

TL;DR
This study uses high-resolution HST images to analyze the geometry of the Extended Narrow-Line Regions in luminous type 2 QSOs, revealing elongated ionization cones and a matter-bounded nature that allows ionizing photons to escape.
Contribution
It provides new high-resolution imaging evidence that the ENLRs in luminous QSOs are elongated and cone-shaped, challenging previous notions of spherical regions at high luminosities.
Findings
ENLRs are elongated with bipolar ionization cones.
The ENLR radius correlates with L[OIII], extending beyond galaxy limits.
ENLRs are matter-bounded, allowing photon escape to intergalactic space.
Abstract
We have used narrow-band [OIII]4959,5007 and H+[NII] Hubble Space Telescope (HST) images of 9 luminous (L[OIII]erg s) type 2 QSOs with redshifts in order to constrain the geometry of their Extended Narrow-Line Regions (ENLR), as recent ground-based studies suggest these regions become more spherical at high luminosities due to destruction of the torus. We find instead elongated ENLRs reaching 4 to 19 kpc from the nucleus and bipolar ionization cones in [OIII]/(H+[NII]) excitation maps indicating that the torus survives these luminosities, allowing the escape of 10 times higher ionizing photon rates along the ionization axis than perpendicularly to it. The exceptional HST angular resolution was key to our success in arriving at these conclusions. Combining our measurements with previous ones…
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