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Development of the hard X-ray telescope for balloon borne experiment

机译:气球实验用硬X射线望远镜的研制

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We have been developing the hard X-ray telescope for balloon borne experiment named InFOCμS. The first InFOCμS flight was carried out on July, 2001. In this flight, we obtained hard X-ray image of Cygnus X-1 above 20 keV. This is first observation with hard X-ray telescope using multilayers. In this mission, the platinum-carbon depth graded multilayers (supermirror) are used as X-ray reflectors combining multi nested thin foil optics to obtain enough efficiency in the hard X-ray region. They make us possible to obtain 40 cm~3 effective area at 30 keV with 40 cm diameter of the telescope. After the first flight, the hard X-ray telescope was recovered without any damages, we measured performances of the telescope in synchrotron radiation facility SPring-8. We obtained the results, the half power diameter (HPD) is 2.4 arcmin and effective area is 38 cm~2 at 30 keV. These results show that no degradation of the performances of the hard X-ray telescope was observed in this measurement. Furthermore, We begin to fabricate new hard X-ray telescope for future InFOCμS flight. The design of the multilayer supermirrors are improved to widen the energy band. The performances of this telescope including effective area and spatial resolution are measured using synchrotron radiation facility SPring-8 and ISAS 30 m X-ray beam line. The measured effective area is significantly larger than the first telescope especially above 30 keV.
机译:我们一直在开发用于气球载实验的硬X射线望远镜,名为InFOCμS。 InFOCμS的首次飞行是在2001年7月进行的。在此飞行中,我们获得了20 keV以上的天鹅座X-1的硬X射线图像。这是使用多层硬X射线望远镜的首次观察。在此任务中,铂-碳深度分级多层膜(超镜)用作X射线反射器,结合了多层嵌套的薄箔光学元件,从而在硬X射线区域获得足够的效率。它们使我们能够在30 keV的望远镜直径40 cm时获得40 cm〜3的有效面积。首次飞行后,硬X射线望远镜恢复原状,没有任何损坏,我们在同步辐射装置SPring-8中测量了该望远镜的性能。我们得到的结果是,在30 keV时,半功率直径(HPD)为2.4 arcmin,有效面积为38 cm〜2。这些结果表明,在该测量中未观察到硬X射线望远镜的性能下降。此外,我们开始为未来的InFOCμS飞行制造新的硬X射线望远镜。改进了多层超级镜的设计以扩大能带。使用同步辐射装置SPring-8和ISAS 30 m X射线束线测量该望远镜的性能,包括有效面积和空间分辨率。测得的有效面积明显大于第一台望远镜,特别是在30 keV以上。

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