AT 2019avd: A novel addition to the diverse population of nuclear transients
A. Malyali, A. Rau, A. Merloni, K. Nandra, J. Buchner, Z. Liu, S., Gezari, J. Sollerman, B. Shappee, B. Trakhtenbrot, I. Arcavi, C. Ricci, S., van Velzen, A. Goobar, S. Frederick, A. Kawka, L. Tartaglia, J. Burke, D., Hiramatsu, M. Schramm, D. van der Boom, G. Anderson

TL;DR
AT 2019avd is a unique nuclear transient with unusual optical and X-ray features, possibly representing a new class of tidal disruption events or related phenomena involving supermassive black holes.
Contribution
This paper reports the discovery and multi-wavelength analysis of AT 2019avd, highlighting its atypical properties and proposing potential explanations involving TDEs or black hole binaries.
Findings
Detected as an ultra-soft X-ray source with a significant brightness increase.
Optical spectra show high-ionisation lines and broad Balmer emission.
Optical light curve exhibits a double peak prior to X-ray detection.
Abstract
We report on SRG/eROSITA, ZTF, ASAS-SN, Las Cumbres, NEOWISE-R, and Swift XRT/UVOT observations of the unique ongoing event AT 2019avd, located in the nucleus of a previously inactive galaxy at . eROSITA first observed AT 2019avd on 2020-04-28 during its first all sky survey, when it was detected as an ultra-soft X-ray source ( eV) that was times brighter in the keV band than a previous 3 upper flux detection limit (with no archival X-ray detection at this position). The ZTF optical light curve in the days preceding the eROSITA detection is double peaked, and the eROSITA detection coincides with the rise of the second peak. Follow-up optical spectroscopy shows the emergence of a Bowen fluorescence feature and high-ionisation coronal lines ([\ion{Fe}{X}] 6375 {\AA}, [\ion{Fe}{XIV}] 5303 {\AA}), along with persistent broad Balmer…
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