X-ray emission from young brown dwarfs in the Orion Nebula Cluster
Preibisch, T, McCaughrean, M J, Grosso, N, Feigelson, E D, Flaccomio, E, Getman, K, Hillenbrand, L A, Meeus, G, Micela, G, Sciortino, S, Stelzer, B
Abstract
Preibisch, T, McCaughrean, M J, Grosso, N, Feigelson, E D, Flaccomio, E, Getman, K, Hillenbrand, L A, Meeus, G, Micela, G, Sciortino, S, Stelzer, B
Abstract
We use the sensitive X-ray data from the Chandra Orion Ultradeep Project (COUP) to study the X-ray properties of 34 spectroscopically-identified brown dwarfs with near-infrared spectral types between M6 and M9 in the core of the Orion Nebula Cluster. Nine of the 34 objects are clearly detected as X-ray sources. The apparently low detection rate is in many cases related to the substantial extinction of these brown dwarfs; considering only the BDs with AV ≤ 5mag, nearly half of the objects (7 out of 16) are detected in X-rays. Our 10-day long X-ray lightcurves of these objects exhibit strong variability, including numerous flares. While one of the objects was only detected during a short flare, a statistical analysis of the lightcurves provides evidence for continuous (‘quiescent’) emission in addition to flares for all other objects. Of these, the ∼M9 brown dwarf COUP1255 = HC212 is one of the coolest known objects with a clear detection of quiescent X-ray emission. The X-ray properties (spectra, fractional X-ray luminosities, flare rates) of these young brown dwarfs are similar
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We use the sensitive X-ray data from the Chandra Orion Ultradeep Project (COUP) to study the X-ray properties of 34 spectroscopically-identified brown dwarfs with near-infrared spectral types between M6 and M9 in the core of the Orion Nebula Cluster. Nine of the 34 objects are clearly detected as X-ray sources. The apparently low detection rate is in many cases related to the substantial extinction of these brown dwarfs; considering only the BDs with AV ≤ 5mag, nearly half of the objects (7 out of 16) are detected in X-rays. Our 10-day long X-ray lightcurves of these objects exhibit strong variability, including numerous flares. While one of the objects was only detected during a short flare, a statistical analysis of the lightcurves provides evidence for continuous (‘quiescent’) emission in addition to flares for all other objects. Of these, the ∼M9 brown dwarf COUP1255 = HC212 is one of the coolest known objects with a clear detection of quiescent X-ray emission. The X-ray properties (spectra, fractional X-ray luminosities, flare rates) of these young brown dwarfs are similar
Key concepts: Brown dwarf, Orion Nebula, Physics, Astrophysics, Stars, Flare, Astronomy, Stellar classification