Variable Intrinsic Absorption in Mrk 279
Jennifer E. Scott (1,2), Nahum Arav (3,4), Jack R. Gabel (3,5), Gerard, A. Kriss (6,7), Jessica Kim Quijano (6), Jelle S. Kaastra (8), Elisa, Costantini (8), Kirk Korista (9) ((1) NASA/GSFC, (2) Towson U., (3) U., Colorado, (4) VA Tech, (5) Creighton U., (6) STScI, (7) JHU

TL;DR
This study investigates the variability of intrinsic absorption in Mrk 279 across multiple epochs, revealing complex covering fractions and ionization changes that challenge simple photoionization models.
Contribution
It introduces a detailed analysis of covering fractions and ionization parameters in Mrk 279's outflow, emphasizing the importance of considering emission component coverage.
Findings
Different covering fractions for outflow components and emission regions.
Ionization parameter increased from ~0.01 to ~0.1 with flux change.
Absence of C III variation suggests it originates outside the outflow.
Abstract
We examine the variability in the intrinsic absorption in the Seyfert 1 galaxy Mrk 279 using three epochs of observations from the Far Ultraviolet Spectroscopic Explorer (FUSE) and two epochs of observations with the Space Telescope Imaging Spectrograph on the Hubble Space Telescope. Rather than finding simple photoionization responses of the absorbing gas to changes in the underlying continuum, the observed changes in the absorption profiles can be understood more clearly if the effective covering fraction of the gas in all emission components, continuum and broad and intermediate velocity width emission lines, is accounted for. While we do not uniquely solve for all of these separate covering fractions and the ionic column densities using the spectral data, we examine the parameter space using previously well-constrained solutions for continuum and single emission component covering…
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