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Grazing-incidence hyperboloid-hyperboloid designs for wide-field x-ray imaging applications

机译:适用于宽视野X射线成像应用的掠入射双曲面-双曲面设计

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摘要

The classical Wolter type I grazing-incidence x-ray telescope consists of a paraboloidal primary mirror and a confocal hyperboloidal secondary mirror. This design exhibits stigmatic imaging on-axis but suffers from coma, astigmatism, field curvature, and higher-order aberrations such as oblique spherical aberration. Wolter-Schwarzschild designs have been developed that strictly satisfy the Abbe sine condition and thus exhibit no spherical aberration or coma. However, for wide-field applications such as the solar x-ray imager (SXI), there is little merit in a design with stigmatic imaging on-axis. Instead, one needs to optimize some area-weighted-average measure of resolution over the desired operational field of view. This has traditionally been accomplished by mere despacing of the focal plane of the classical Wolter type I telescope. Here we present and evaluate in detail a family of hyperboloid-hyperboloid grazing-incidence x-ray telescope designs whose wide-field performance is much improved over that of an optimally despaced Wolter type I and even somewhat improved over that of an optimally despaced Wolter-Schwarzschild design.
机译:经典的I型Wolter掠入射X射线望远镜由抛物面主镜和共焦双曲面次镜组成。该设计在轴上显示像散成像,但存在昏迷,像散,像场弯曲和高阶像差(例如斜球面像差)。已经开发出严格满足阿贝正弦条件的Wolter-Schwarzschild设计,因此没有球差或彗差。但是,对于诸如太阳X射线成像仪(SXI)之类的广域应用,在轴上进行像散成像的设计没有什么优点。取而代之的是,需要在所需的操作视野上优化分辨率的某些区域加权平均度量。传统上,这是通过仅对经典的I型Wolter望远镜的焦平面进行间距来实现的。在这里,我们介绍并详细评估了一系列双曲面-双曲面掠入射x射线望远镜设计,其广域性能比最佳间隔Wolter I型有了很大改善,甚至比最佳间隔Wolter-I型也有了一些改善。 Schwarzschild设计。

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