用x射线和可见光测试龙虾眼式望远镜

T. Döhring, Veronika Stieglitz, P. Friedrich, V. Burwitz, Martin Jelínek, R. Hudec
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摘要

近年来,“阿沙芬堡天文和空间仪器能力中心”(ACCASI)开发了用于天文x射线光学的反射涂层。作为巴伐利亚-捷克合作的一部分,阿沙芬堡技术大学和布拉格捷克技术大学现在建造了两台机械相同的望远镜。一架光学望远镜配备了由捷克项目伙伴制造的传统镀金镜。第二架望远镜的34个x射线反射镜使用了一种由铬和铱制成的创新涂层系统,该涂层系统应用于阿沙芬堡涂层实验室。这两架望远镜都是根据龙虾眼睛反射的仿生原理设计的。这种光学系统在相互垂直的镜面上有两个连续的反射。这使得一个大的视场具有许多平方度的直径,然而,这是以降低角分辨率为代价的。在MPE的PANTER测试设备上对这些望远镜进行了广泛的x射线表征,该设备模拟平行星光入射到望远镜上。该望远镜的x射线角分辨率约为4角分,焦距约为2米。此外,所使用的x射线反射镜也反射和聚焦可见光,这种光学系统的功能在实验室测试中得到了检验。现在又进行了另一项测试,以检查望远镜对可见天空中真实物体的分辨率以及星座的成像特性。通过观测可见天空的天体进行这种功能测试,可以简化和加速用于卫星应用的x射线望远镜的开发。
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Testing of lobster-eye type telescopes with X-rays and visible light
Reflective coatings for astronomical X-ray optics were developed at the “Aschaffenburg Competence Center for Astronomical and Space Instrumentation” (ACCASI) since several years. As part of a Bavarian-Czech cooperation between the Technical University of Aschaffenburg and the Czech Technical University of Prague, now two mechanically identical telescopes were built. One telescope optic was equipped with conventional gold-coated mirrors, manufactured by the Czech project partners. The 34 X-ray mirrors of the second telescope use an innovative coating system made of chromium and iridium, which was applied at the Aschaffenburg coating laboratory. Both telescopes are designed according to the bionic principle of a reflecting lobster eye. The optics works with two consecutive reflections on mutually perpendicular mirror surfaces. This enables a large field of view with many square degrees in diameter, which, however, comes at the price of a reduced angular resolution. An extensive X-ray characterization of these telescopes was carried out at the PANTER test facility of MPE, which simulates parallel starlight incident on the telescopes. The telescopes have an angular resolution of about 4 arc minutes in X-rays and a focal length of about 2 meters. Furthermore, the used X-ray mirrors reflect and focus visible light as well and this functionality in the optical regime was checked in laboratory tests. Now another test campaign was done to examine the telescope resolution for real objects of the visible sky and the imaging properties for star constellations. Such functional tests by observing astronomical objects of the visible sky may simplify and accelerate the development of X-ray telescopes for satellite applications.
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