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首页> 外文期刊>Astronomy and astrophysics >Effective area calibration of the reflection grating spectrometers of XMM-Newton - II. X-ray spectroscopy of DA white dwarfs
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Effective area calibration of the reflection grating spectrometers of XMM-Newton - II. X-ray spectroscopy of DA white dwarfs

机译:XMM-Newton-II反射光栅光谱仪的有效面积校准。 DA白矮星的X射线光谱

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Context. White dwarf spectra have been widely used as a calibration source for X-ray and EUV instruments. The in-flight effective area calibration of the reflection grating spectrometers (RGS) of XMM-Newton depend upon the availability of reliable calibration sources. Aims. We investigate how well these white dwarf spectra can be used as standard candles at the lowest X-ray energies in order to gauge the absolute effective area scale of X-ray instruments. Methods. We calculate a grid of modelatmospheres for SiriusB and HZ43A, and adjust the parameters using several constraints until the ratio of the spectra of both stars agrees with the ratio as observed by the low energy transmission grating spectrometer (LETGS) of Chandra. This ratio is independent of any errors in the effective area of the LETGS. Results. We find that we can constrain the absolute X-ray spectrum of both stars with better than 5% accuracy. The best-fit modelfor both stars is close to a pure hydrogen atmosphere, and we put tight limits to the amount of helium or the thickness of a hydrogen layer in both stars. Our upper limit to the helium abundance in SiriusB is 4 times below the previous detection based on EUVE data. We also find that our results are sensitive to the adopted cut-off in the Lyman pseudo-continuum opacity in SiriusB. We get best agreement with a long wavelength cut-off. Conclusions. White dwarf model atmospheres can be used to derive the effective area of X-ray spectrometers in the lowest energy band. An accuracy of 3-4% in the absolute effective area can be achieved. Key words: stars: atmospheres - X-rays: stars - X-rays: general - instrumentation: spectrographs - techniques: spectroscopic
机译:上下文。白矮光谱已被广泛用作X射线和EUV仪器的校准源。 XMM-Newton的反射光栅光谱仪(RGS)的飞行中有效面积校准取决于可靠校准源的可用性。目的我们研究了这些白矮星光谱在最低X射线能量下可以用作标准烛光的情况,以便测量X射线仪器的绝对有效面积比例。方法。我们计算了SiriusB和HZ43A的模型大气网格,并使用几个约束条件调整参数,直到两颗恒星的光谱比率与钱德拉的低能透射光栅光谱仪(LETGS)观察到的比率一致为止。该比率与LETGS有效区域中的任何错误无关。结果。我们发现我们可以以超过5%的精度约束两个恒星的绝对X射线光谱。两颗恒星的最佳拟合模型都接近纯氢气气氛,并且我们对两颗恒星中的氦气量或氢层厚度设置了严格的限制。根据EUVE数据,SiriusB中氦气丰度的上限比以前的检测低4倍。我们还发现,我们的结果对SiriusB中Lyman伪连续体不透明性的采用截止值敏感。我们获得了长波长截止的最佳协议。结论。白矮星模型大气可用于得出最低能带中X射线光谱仪的有效面积。绝对有效区域的精度可以达到3-4%。关键词:恒星:大气-X射线:恒星-X射线:常规-仪器:光谱仪-技术:光谱

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