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BEaTriX, expanded X-ray beam facility for testing modular elements of telescope optics: an update

机译:BEaTriX,用于测试望远镜光学模块组件的扩展X射线束设施:一项更新

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We present in this paper an update on the design of BEaTriX (Beam Expander Testing X-ray facility), an X-ray apparatus to be realized at INAF/OAB and that will generate an expanded, uniform and parallel beam of soft X-rays. BEaTriX will be used to perform the functional tests of X-ray focusing modules of large X-ray optics such as those for the ATHENA X-ray observatory, using the Silicon Pore Optics (SPO) as a baseline technology, and Slumped Glass Optics (SGO) as a possible alternative. Performing the tests in X-rays provides the advantage of an in-situ, at-wavelength quality control of the optical modules produced in series by the industry, performing a selection of the modules with the best angular resolution, and, in the case of SPOs, there is also the interesting possibility to align the parabolic and the hyperbolic stacks directly under X-rays, to minimize the aberrations. However, a parallel beam with divergence below 2 arcsec is necessary in order to measure mirror elements that are expected to reach an angular resolution of about 4 arcsec, since the ATHENA requirement for the entire telescope is 5 arcsec. Such a low divergence over the typical aperture of modular optics would require an X-ray source to be located in a several kilometers long vacuum tube. In contrast, BEaTriX will be compact enough (5 m × 14 m) to be housed in a small laboratory, will produce an expanded X-ray beam 60 mm × 200 mm broad, characterized by a very low divergence (1.5 arcsec HEW), strong polarization, high uniformity, and X-ray energy selectable between 1.5 keV and 4.5 keV. In this work we describe the BEaTriX layout and show a performance simulation for the X-ray energy of 4.5 keV.
机译:我们在本文中介绍BEaTriX(光束扩展器测试X射线设备)的设计更新,BEaTriX是将在INAF / OAB上实现的X射线设备,它将生成扩展的,均匀且平行的软X射线束。 BEaTriX将用于使用硅微孔光学(SPO)作为基准技术和大型玻璃光学(例如用于ATHENA X射线观测站的大型X射线光学器件的X射线聚焦模块的功能测试) SGO)。在X射线中执行测试可提供以下优势:对行业中批量生产的光学模块进行原位,波长上的质量控制,选择具有最佳角分辨率的模块,在这种情况下,在SPO中,还有一种有趣的可能性是将抛物线叠层和双曲线叠层直接对准X射线,以最小化像差。但是,为了测量预期达到约4 arcsec的角分辨率的镜面元件,发散度低于2 arcsec的平行光束是必需的,因为整个望远镜的ATHENA要求是5 arcsec。在模块化光学器件的典型孔径上的如此低的发散度将要求X射线源位于几公里长的真空管中。相比之下,BEaTriX足够紧凑(5 m×14 m),可以容纳在一个小型实验室中,它将产生60 mm×200 mm宽的扩展X射线束,其发散度非常低(1.5 arcsec HEW),强极化,高均匀性和X射线能量可在1.5 keV至4.5 keV之间选择。在这项工作中,我们描述了BEaTriX布局,并展示了针对4.5 keV的X射线能量的性能仿真。

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