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An X-ray Outburst from the Rapidly Accreting Young Star That Illuminates McNeil's Nebula

机译:快速增长的年轻恒星发出的X射线爆发照亮了麦克尼尔的星云

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摘要

Young, low-mass stars are luminous X-ray sources whose powerful X-ray flares may exert a profound influence over the process of planet formation. The origin of such emission is uncertain. Although many or perhaps most recently formed, low-mass stars emit X-rays as a consequence of solar-like coronal activity, it has also been suggested that X-ray emission may be a direct result of mass accretion onto the forming star. Here we report X-ray imaging spectroscopy observations which reveal a factor ~50 increase in the X-ray flux from a young star that is presently undergoing a spectacular optical/IR outburst. The outburst is thought to be due to the sudden onset of a phase of rapid accretion. The coincidence of a surge in X-ray brightness with the optical/IR eruption demonstrates that strongly enhanced high-energy emission from young stars can occur as a consequence of high accretion rates. We suggest that such accretion- enhanced X-ray emission from erupting young stars may be short-lived, because intense star-disk magnetospheric interactions are quenched rapidly by the subsequent accretion flood.
机译:年轻的低质量恒星是发光的X射线源,其强大的X射线耀斑可能会对行星的形成过程产生深远的影响。这种排放的来源尚不确定。尽管许多或也许是最近形成的低质量恒星由于类似太阳的日冕活动而发出X射线,但也有人提出X射线的发射可能是质量积聚在形成恒星上的直接结果。在这里,我们报告X射线成像光谱学观察结果,该结果揭示了来自一颗正在经历壮观的光学/ IR爆发的年轻恒星的X射线通量增加了约50倍。人们认为爆发是由于快速增生阶段的突然发作。 X射线亮度激增与光学/红外爆发的同时发生表明,由于高吸积率,可能会强烈增强年轻恒星的高能发射。我们认为,由于年轻的恒星爆发而产生的这种增生增强的X射线发射可能是短暂的,因为随后的增生洪水会迅速消除强烈的星盘磁层相互作用。

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