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X-ray Emission from T Tauri Stars and the Role of Accretion: Inferences from the XMM-Newton Extended Survey of the Taurus Molecular Cloud

机译:T金牛座星的X射线辐射和吸积作用:来自XMM-牛顿对金牛座分子云的扩展调查的推论

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摘要

T Tau stars display different X-ray properties depending on whether they are accreting (classical T Tau stars; CTTS) or not (weak-line T Tau stars; WTTS). We use data from the XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST) to study differences in X-ray properties between CTTS and WTTS. We perform correlation and regression analysis between X-ray parameters and stellar properties. We confirm the existence of a X-ray luminosity (Lx) vs. mass (M) relation, Lx ~ M^(1.69 +/- 0.11), but this relation is a consequence of X-ray saturation and a mass vs. bolometric luminosity (L*) relation for the TTS with an average age of 2.4 Myr. X-ray saturation indicates Lx = const L*, although the constant is different for the two subsamples: const = 10^(-3.73 +/- 0.05) for CTTS and const = 10^(-3.39 +/- 0.06) for WTTS. Given a similar L* distribution of both samples, the X-ray luminosity function also reflects a real X-ray deficiency in CTTS, by a factor of ~ 2 compared to WTTS. The average electron temperatures Tav are correlated with Lx in WTTS but not in CTTS; CTTS sources are on average hotter than WTTS sources. The most fundamental properties are the two saturation laws, indicating suppressed Lx for CTTS. We speculate that some of the accreting material in CTTS is cooling active regions to temperatures that may not significantly emit in the X-ray band, and if they do, high-resolution spectroscopy may be required to identify lines formed in such plasma, while CCD cameras do not detect these components. The similarity of the Lx vs. Tav dependencies in WTTS and main-sequence stars as well as their similar X-ray saturation laws suggests similar physical processes for the hot plasma, i.e., heating and radiation of a magnetic corona.
机译:T头星显示出不同的X射线特性,这取决于它们是否积聚(经典T头星; CTTS)(弱线T头星; WTTS)。我们使用来自XMM-牛顿金牛座分子云扩展调查(XEST)的数据来研究CTTS和WTTS之间X射线特性的差异。我们在X射线参数和恒星特性之间进行相关和回归分析。我们确认存在X射线亮度(Lx)与质量(M)的关系Lx〜M ^(1.69 +/- 0.11),但这是X射线饱和度和质量与辐射热强度的关系的结果平均年龄为2.4 Myr的TTS的光度(L *)关系。 X射线饱和度表示Lx =常数L *,尽管两个子样本的常数不同:对于CTTS,常数= 10 ^(-3.73 +/- 0.05),对于WTTS,常数= 10 ^(-3.39 +/- 0.06) 。给定两个样品的L *分布相似,X射线光度函数也反映了CTTS中的实际X射线缺陷,与WTTS相比,其误差约为2倍。 WTTS中的平均电子温度Tav与Lx相关,而CTTS中的平均电子温度Tav与Lx相关。 CTTS来源平均比WTTS来源热。最基本的属性是两个饱和定律,表明CTTS的Lx受到抑制。我们推测,CTTS中的某些积聚物质正在将有源区域冷却至可能不会在X射线波段显着发射的温度,如果确实如此,则可能需要高分辨率光谱法来鉴定在此类等离子体中形成的线,而CCD相机无法检测到这些组件。 WTTS和主序星中Lx与Tav依存关系的相似性以及它们相似的X射线饱和定律表明,热等离子体的物理过程相似,即磁晕的加热和辐射。

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