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Improving XMM-Newton EPIC pn data at low energies: method and application to the Vela SNR

机译:低能量改善XMM-Newton EPIC pn数据:Vela SNR的方法和应用

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High quantum efficiency over a broad spectral range is one of the main properties of the EPIC pn camera onboard XMM-Newton. The quantum efficiency rises from ~ 75 % at 0.2 keV to ~ 100 % at 1 keV, stays close to 100% until 8 keV, and is still ~ 90% at 10 keV. The EPIC pn camera is attached to an X-ray telescope which has the highest collecting area currently available, in particular at low energies (more than 1400 cm~2 between 0.1 and 2.0 keV). Thus, this instrument is very sensitive to the low-energy X-ray emission. However, X-ray data at energies below ~ 0.2 keV are considerably affected by detector effects, which become more and more important towards the lowest transmitted energies. In addition to that, pixels which have received incorrect offsets during the calculation of the offset map at the beginning of each observation, show up as bright patches in low-energy images. Here we describe a method which is not only capable of suppressing the contaminations found at low energies, but which also improves the data quality throughout the whole EPIC pn spectral range. This method is then applied to data from the Vela supernova remnant.
机译:XMM-Newton板载EPIC pn摄像机的主要特性之一是在宽光谱范围内实现高量子效率。量子效率从0.2 keV时的〜75%增至1 keV时的〜100%,直到8 keV时接近100%,而在10 keV时仍为〜90%。 EPIC pn摄像机安装在X射线望远镜上,该望远镜具有当前可用的最大收集区域,尤其是在低能量(0.1到2.0 keV之间大于1400 cm〜2)时。因此,该仪器对低能X射线发射非常敏感。但是,能量低于〜0.2 keV的X射线数据受探测器效应的影响很大,对于最低的透射能量,该效应变得越来越重要。除此之外,在每次观察开始时在偏移图的计算过程中接收到错误偏移的像素在低能图像中显示为亮块。在这里,我们描述了一种方法,该方法不仅能够抑制在低能量下发现的污染,而且还可以改善整个EPIC pn光谱范围内的数据质量。然后将此方法应用于来自Vela超新星残余的数据。

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