Results from DROXO IV. EXTraS discovery of an X-ray flare from the Class I protostar candidate ISO-Oph 85
Daniele Pizzocaro, Beate Stelzer, Roberta Paladini, Andrea Tiengo,, Gianni Lisini, Giovanni Novara, Giacomo Vianello, Andrea Belfiore, Martino, Marelli, David Salvetti, Ignazio Pillitteri, Salvatore Sciortino, Daniele, D'Agostino, Frank Haberl, Mike Watson, Joern Wilms

TL;DR
This study reports the first detection of an X-ray flare from a candidate Class I protostar, ISO-Oph 85, using a comprehensive analysis of its spectral energy distribution and archival X-ray data, revealing new insights into early stellar evolution.
Contribution
The paper introduces a novel approach combining SED analysis with archival X-ray data to identify and characterize X-ray flares from embedded protostars, expanding understanding of YSO X-ray properties.
Findings
Detected a transient X-ray flare from ISO-Oph 85 with luminosity LogL_X=31.1 erg/s
Identified the object as a candidate Class I protostar based on SED analysis
Set an upper limit of LogL_X<29.5 erg/s for quiescent emission
Abstract
X-ray emission from Young Stellar Objects (YSOs) is crucial to understand star formation. A very limited amount of X-ray results is available for the protostellar (ClassI) phase. A systematic search of transient X-ray phenomena combined with a careful evaluation of the evolutionary stage offer a widely unexplored window to our understanding of YSOs X-ray properties. Within the EXTraS project, a search for transients and variability in the whole XMM-Newton archive, we discover transient X-ray emission consistent with ISO-Oph 85, a strongly embedded YSO in the rho Ophiuchi region, not detected in previous time-averaged X-ray studies. We extract an X-ray light curve for the flare and determine its spectral parameters from XMM-Newton/EPIC (European Photon Imaging Camera) data using quantile analysis. The X-ray flare (), the only one detected in the XMM-Newton archive for ISO-Oph…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Stellar, planetary, and galactic studies · Astro and Planetary Science
