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The evolution of the X-ray emission of HH?2 - Investigating heating and cooling processes

机译:HH?2的X射线发射的演变-研究加热和冷却过程

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摘要

Young stellar objects often drive powerful bipolar outflows, which evolve on timescales of a few years. An increasing number of these outflows has been detected in X-rays implying the existence of million degree plasma almost co-spatial with the lower temperature gas observed in the optical and near-infrared. The details of the heating and cooling processes of the X-ray emitting part of these so-called Herbig-Haro objects are still ambiguous, e.g., whether the cooling is dominated by expansion, radiation, or thermal conduction. We present a second epoch Chandra observation of the first X-ray detected Herbig-Haro object (HH?2) and derive the proper-motion of the X-ray emitting plasma and its cooling history. We argue that the most likely explanation for the constancy of the X-ray luminosity, the alignment with the optical emission and the proper-motion is that the cooling is dominated by radiative losses leading to cooling times exceeding a decade. We explain that a strong shock caused by fast material ramming into slower gas in front of it about ten years ago can explain the X-ray emission while being compatible with the available multi-wavelength data of HH?2.
机译:年轻的恒星物体通常会推动强大的双极流出,这种流出会在几年的时间尺度上演变。在X射线中已检测到越来越多的这些流出,这意味着百万度等离子体的存在与光学和近红外中观察到的低温气体几乎共空间。这些所谓的Herbig-Haro物体的X射线发射部分的加热和冷却过程的细节仍然是模棱两可的,例如,冷却是由膨胀,辐射还是热传导主导。我们介绍了第二个时期Chandra对第一个X射线检测到的Herbig-Haro对象(HH?2)的观测,并得出了X射线发射等离子体的正常运动及其冷却历史。我们认为,最有可能解释X射线亮度恒定,与光发射对齐以及适当运动的原因是,冷却主要由辐射损耗决定,导致冷却时间超过十年。我们解释说,大约十年前,快速材料撞击其前方较慢的气体所引起的强烈冲击可以解释X射线的发射,同时与HH?2的可用多波长数据兼容。

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