HST/COS observations of the newly discovered obscuring outflow in NGC 3783
G.A. Kriss (1), M. Mehdipour (2), J.S. Kaastra (2, 3), A. Rau (4),, J. Bodensteiner (4, 5), R. Plesha (1), N. Arav (6), E. Behar (7), S., Bianchi (8), G. Branduardi-Raymont (9), M. Cappi (10), E. Costantini (2), B., De Marco (11), L. Di Gesu (12), J. Ebrero (13), S. Kaspi (7)

TL;DR
This study uses multiwavelength observations to characterize a transient obscuring outflow in NGC 3783, revealing new broad absorption features and linking them to changes in X-ray and UV spectra, indicating a dynamic outflow event.
Contribution
First simultaneous UV, optical, and X-ray observations of NGC 3783's obscuring outflow, identifying new absorption components and their evolution during the event.
Findings
New broad, blue-shifted absorption components detected in UV spectra.
X-ray and UV absorption features vary in tandem, indicating linked outflow properties.
Ionization state and covering factor of the obscuring gas are constrained.
Abstract
To understand the nature of transient obscuring outflows in active galactic nuclei, we observed the Seyfert 1 galaxy NGC 3783 on two occasions in December 2016 triggered by Swift monitoring indicating strong soft X-ray absorption in November. We obtained ultraviolet spectra using COS on HST and optical spectra using FEROS on the MPG/ESO 2.2-m telescope that were simultaneous with X-ray spectra from XMM-Newton and NuSTAR. We find new components of broad, blue-shifted absorption associated with Ly, \ion{N}{v}, \ion{Si}{iv}, and \ion{C}{iv} in our COS spectra. The absorption extends from velocities near zero in the rest-frame of the host galaxy to . These features appear for the first time in NGC 3783 at the same time as the heavy soft X-ray absorption seen in the XMM-Newton X-ray spectra. The X-ray absorption has a column density of $\sim 10^{23}~\rm…
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