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The x ray reflectivity of the AXAF VETA-I optics

机译:AXAF VETA-I光学元件的X射线反射率

摘要

The x-ray reflectivity of the VETA-I optic, the outermost shell of the AXAF x-ray telescope, with a bare Zerodur surface, is measured and compared with theoretical predictions. Measurements made at energies of 0.28, 0.9, 1.5, 2.1, and 2.3 keV are compared with predictions based on ray trace calculations. The data were obtained at the x-ray calibrations facility at Marshall Space Flight Center with an electron impact x-ray source located 528 m from the grazing incidence mirror. The source used photoelectric absorption filters to eliminate bremsstrahlung continuum. The mirror has a diameter of 1.2 m and a focal length of 10 m. The incident and reflected x-ray flux are detected using two proportional counters, one located in the incident beam of x-rays at the entrance aperture of the VETA-I, and the other in the focal plane behind an aperture of variable size. Results on the variation of the reflectivity with energy as well as the absolute value of the reflectivity are presented. We also present a synchrotron reflectivity measurement with high energy resolution over the range 0.26 to 1.8 keV on a flat Zerodur sample, done at NSLS. We present evidence for contamination of the flat by a thin layer of carbon on the surface, and the possibility of alteration of the surface composition of the VETA-I mirror perhaps by the polishing technique. The overall agreement between the measured and calculated effective area of VETA-I is between 2.6 percent and 10 percent, depending on which model for the surface composition is adopted. Measurements at individual energies deviate from the best-fitting calculation to 0.3 to 0.8 percent, averaging 0.6 percent at energies below the high energy cutoff of the mirror reflectivity, and are as high as 20.7 percent at the cutoff. We also discuss the approach to the final preflight calibration of the full AXAF flight mirror.
机译:测量了AXAF射线望远镜最外层的VETA-I光学元件的X射线反射率,该表面具有裸露的Zerodur表面,并将其与理论预测值进行了比较。将能量为0.28、0.9、1.5、2.1和2.3 keV的测量结果与基于射线迹线计算的预测结果进行比较。数据是从马歇尔太空飞行中心的X射线校准设施获得的,电子撞击X射线源位于距掠入射镜528 m处。该光源使用光电吸收滤镜消除致连续体。镜子的直径为1.2 m,焦距为10 m。使用两个比例计数器检测入射和反射的X射线通量,一个计数器位于VETA-I入射孔处的X射线入射光束中,另一个位于可变大小的孔后面的焦平面中。给出了反射率随能量变化的结果以及反射率的绝对值。我们还提出了在NSLS上对平面Zerodur样品进行高能量分辨率,在0.26至1.8 keV范围内的同步加速器反射率测量。我们提供了表面上薄薄的一层碳污染该平面的证据,以及可能通过抛光技术改变了VETA-I镜表面成分的可能性。 VETA-I的测量面积与计算有效面积之间的总体一致性在2.6%至10%之间,具体取决于所采用的表面组成模型。单个能量下的测量值偏离最佳拟合值的范围为0.3%至0.8%,在低于镜面反射率高能量截止值的能量处的平均值为0.6%,在截止值时高达20.7%。我们还将讨论整个AXAF飞行镜的最终飞行前校准的方法。

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