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首页> 外文期刊>Astronomy and astrophysics >A new comprehensive 2D model of the point spread functions of the XMM-Newton EPIC telescopes: spurious source suppression and improved positional accuracy
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A new comprehensive 2D model of the point spread functions of the XMM-Newton EPIC telescopes: spurious source suppression and improved positional accuracy

机译:XMM-Newton EPIC望远镜的点扩展功能的全新综合2D模型:杂散源抑制和提高的定位精度

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Aims. We describe here a new full 2D parameterization of the PSFs of the three XMM-Newton EPIC telescopes as a function of instrument, energy, off-axis angle and azimuthal angle, covering the whole field-of-view (FoV) of the three EPIC detectors. It?models the general PSF?envelopes, the primary and secondary spokes, their radial dependencies, and the large-scale azimuthal variations. Methods. This PSF model has been constructed via the stacking and centering of a large number of bright, but not significantly piled-up point sources from the full FoV of each EPIC detector, and azimuthally filtering the resultant PSF?envelopes to form the spoke structures and the gross azimuthal shapes observed. Results. This PSF model is available for use within the XMM-Newton science analysis system via the usage of current calibration files XRTi_XPSF_0011.CCF and later versions. Initial source-searching tests showed substantial reductions in the numbers of spurious sources being detected in the wings of bright point sources. Furthermore, we have uncovered a systematic error in the previous PSF?system, affecting the entire mission to date, whereby returned source?RA and Dec?values are seen to vary sinusoidally about the true position (amplitude ?≈0.8″) with source azimuthal position. Conclusions. The new PSF system is now available and is seen as a major improvement with regard to the detection of spurious sources. The new PSF also largely removes the discovered astrometry error and is seen to improve the positional accuracy of EPIC. The modular nature of the PSF?system allows for further refinements in the?future.
机译:目的我们在这里描述了三个XMM-Newton EPIC望远镜的PSF的新的完整2D参数化,该参数是仪器,能量,偏轴角和方位角的函数,涵盖了三个EPIC的整个视场(FoV)探测器。它可以模拟一般的PSF包络,主要和次要辐条,它们的径向依存关系以及大规模的方位角变化。方法。通过从每个EPIC检测器的整个FoV中堆叠大量明亮但不明显堆积的点源并对其进行居中,然后对所得的PSF包络进行方位滤波,以形成辐条结构和观察到大的方位角形状。结果。通过使用当前的校准文件XRTi_XPSF_0011.CCF和更高版本,可以在XMM-Newton科学分析系统中使用此PSF模型。最初的源搜索测试表明,在亮点源的机翼中检测到的杂散源数量大大减少。此外,我们发现了以前的PSF系统中存在系统性错误,影响了迄今为止的整个任务,由此可以看出,返回源的RA和Dec值在源方位角的真实位置(振幅≈≈0.8英寸)上呈正弦变化。位置。结论。新的PSF系统现已上市,并且在检测杂散源方面被视为一项重大改进。新的PSF还可以大大消除发现的天文测量误差,并可以提高EPIC的定位精度。 PSF系统的模块化本质允许对未来的进一步完善。

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