An X-ray flaring event and a variable soft X-ray excess in the Seyfert LCRS B040659.9-385922 as detected with eROSITA
S. Krishnan, A.G. Markowitz, M. Krumpe, D. Homan, R. Brogan, S., Haemmerich, M. Gromadzki, T. Saha, M. Schramm, D.E. Reichart, H. Winkler, S., Waddell, J. Wilms, A. Rau, Z. Liu, I. Grotova

TL;DR
This study reports on a significant X-ray and optical flare in the Seyfert galaxy LCRS B040659.9-385922, revealing complex spectral changes and accretion variability through multiwavelength observations and modeling.
Contribution
It provides the first detailed multiwavelength analysis of a flare in this Seyfert galaxy, including spectral modeling and emission line behavior during the event.
Findings
X-ray flux increased by a factor of five over six months
Detected a soft X-ray excess near the flare peak
Observed fading of broad HeII and Hβ emission lines
Abstract
Extreme continuum variability in AGNs can indicate extreme changes in accretion flows onto supermassive black holes. We explore the multiwavelength nature of a continuum flare in the Seyfert LCRS B040659.9385922. The all-sky X-ray surveys conducted by the eROSITA showed that its X-ray flux increased by a factor of roughly five over six months, and concurrent optical photometric monitoring with the ATLAS showed a simultaneous increase. We triggered a multiwavelength follow-up monitoring program (XMM, NICER; optical spectroscopy) to study the evolution of the accretion disk, broad-line region, and X-ray corona. During the campaign, X-ray and optical continuum flux subsided over roughly six months. We detected a soft X-ray excess near the flare peak and after it subsided, both exhibiting a power-law (nonthermal) behavior. We modeled the broadband optical/UV/X-ray spectral energy…
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Taxonomy
TopicsGamma-ray bursts and supernovae · Solar and Space Plasma Dynamics · Astrophysical Phenomena and Observations
