Evidence for magnetic activity at starbirth: a powerful X-ray flare from the Class 0 protostar HOPS 383
Nicolas Grosso (LAM), Kenji Hamaguchi (CRESST, GSFC), David Principe,, Joel Kastner (Center for Imaging Science, RIT)

TL;DR
This study reports the first detection of a powerful X-ray flare from a Class 0 protostar, providing direct evidence of magnetic activity during the earliest stages of star formation.
Contribution
We present the first confirmed X-ray detection of magnetic activity in a Class 0 protostar, HOPS 383, during a significant flare, indicating magnetic processes occur early in star formation.
Findings
Detected a 3.3-hour X-ray flare from HOPS 383 with peak luminosity ~4 x 10^31 erg/s.
X-ray spectrum shows high absorption and a 6.4 keV iron emission line.
X-ray activity is spatially coincident with the protostar's jet base.
Abstract
Context. Class 0 protostars represent the earliest evolutionary stage of solar-type stars, during which the majority of the system mass resides in an infalling envelope of gas and dust and is not yet in the central, nascent star. Although X-rays are a key signature of magnetic activity in more evolved protostars and young stars, whether such magnetic activity is present at the Class 0 stage is still debated. Aims. We aim to detect a bona fide Class 0 protostar in X-rays. Methods. We observed HOPS 383 in 2017 December in X-rays with the Chandra X-ray Observatory (84 ks) and in near-infrared imaging with the Southern Astrophysical Research telescope. Results. HOPS 383 was detected in X-rays during a powerful flare. This hard (E > 2 keV) X-ray counterpart was spatially coincident with the northwest 4 cm component of HOPS 383, which would be the base of the radio thermal jet launched…
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