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首页> 外文期刊>The Astrophysical journal >Ion-by-Ion Differential Emission Measure Determination of Collisionally Ionized Plasma. II. Application to Hot Stars
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Ion-by-Ion Differential Emission Measure Determination of Collisionally Ionized Plasma. II. Application to Hot Stars

机译:碰撞电离等离子体的逐离子差分发射量度测定。二。申请热星

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In a previous paper we have described a technique to derive constraints on the differential emission measure (DEM) distribution, a measure of the temperature distribution, of collisionally ionized hot plasmas from their X-ray emission line spectra. We apply this technique to the Chandra HETGS spectra of all of the nine hot stars available to us at the time that this project was initiated. We find that DEM distributions of six of the seven O stars in our sample are very similar, but that θ1 Ori C has an X-ray spectrum characterized by higher temperatures. The DEM distributions of both of the B stars in our sample have lower magnitudes than those of the O stars, and one, τ Sco, is characterized by higher temperatures than the other, β Cru. These results confirm previous work in which high temperatures have been found for θ1 Ori C and τ Sco and taken as evidence for channeling of the wind in magnetic fields, the existence of which is related to the stars' youth. Our results demonstrate the utility of our method for deriving temperature information for large samples of X-ray emission-line spectra.
机译:在先前的论文中,我们描述了一种从X射线发射谱线推导碰撞离子化热等离子体对差分发射量度(DEM)分布(温度分布的量度)的约束的技术。在这项计划启动之时,我们将这项技术应用于了我们可获得的所有九颗热星的钱德拉HETGS光谱。我们发现样本中7个O星中有6个的DEM分布非常相似,但是θ1Ori C的X射线光谱具有较高的温度特征。在我们的样本中,两个B星的DEM分布都比O星的DEM分布低,并且一个τSco的特征在于温度高于另一个βCru。这些结果证实了先前的工作,其中发现θ1Ori C和τSco的高温,并作为风在磁场中窜动的证据,而磁场的存在与恒星的年轻有关。我们的结果证明了我们的方法可用于导出大型X射线发射线光谱样本的温度信息。

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