Evidence for magnetic activity at starbirth: a powerful X-ray flare from the Class 0 protostar HOPS 383
arXiv:2006.02676 · doi:10.1051/0004-6361/202038185
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 by HOPS 383. The flare duration was 3.3 h; at the peak, the X-ray luminosity reached 4 x 1E31 erg s --1 in the 2-8 keV energy band, a level at least an order of magnitude larger than that of the undetected quiescent emission from HOPS 383. The X-ray flare spectrum is highly absorbed (NH 7 x 1E23 cm --2), and it displays a 6.4 keV emission line with an equivalent width of 1.1 keV, arising from neutral or low-ionization iron. Conclusions. The detection of a powerful X-ray flare from HOPS 383 constitutes direct proof that magnetic activity can be present at the earliest formative stages of solar-type stars.
Accepted for publication in Astronomy \& Astrophysics
References in corpus (11)
- The Gaia mission
- Initial Performance of the NEOWISE Reactivation Mission
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- X-Ray Spectroscopy of Stars
- X-ray flares in Orion young stars. I. Flare characteristics
- X-ray Study of Triggered Star Formation and Protostars in IC 1396N
- HOPS 383: An Outbursting Class 0 Protostar in Orion
- The onset of X-ray emission in young stellar objects: a Chandra observation of the Serpens star-forming region
- First 450-micron dust continuum mapping of the massive star-forming region NGC 3576 with the P-ArTeMiS bolometer camera
- X-ray Fluorescent Fe Kalpha Lines from Stellar Photospheres
- A deep X-ray view of the Class I YSO Elias 29 with XMM-Newton and NuSTAR
Cited by in corpus (9)
- The Rate, Amplitude and Duration of Outbursts from Class 0 Protostars in Orion
- Magnetically regulated collapse in the B335 protostar? II. Observational constraints on gas ionization and magnetic field coupling
- Importance of source structure on complex organics emission II. Can disks explain lack of methanol emission from some low-mass protostars?
- The Near Stellar Environment of Class 0 Protostars: A First Look with Near-Infrared Spectroscopy
- Modeling Hadronic Gamma-ray Emissions from Solar Flares and Prospects for Detecting Non-thermal Signatures from Protostars
- The JCMT Transient Survey: Four Year Summary of Monitoring the Submillimeter Variability of Protostars
- Magnetic field measurements in a sample of Class I and flat-spectrum protostars observed with SPIRou
- Star Forming Regions
- X-ray Super-Flares From Pre-Main Sequence Stars: Flare Modeling