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X-ray interferometry with transmissive beam combiners for ultra-high angular resolution astronomy

机译:具有透射光束组合器的X射线干涉仪可实现超高分辨率的天文学

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Abstract Interferometry provides one of the possible routes to ultra-high angular resolution for X-ray and gamma-ray astronomy. Sub-micro-arc-second angular resolution, necessary to achieve objectives such as imaging the regions around the event horizon of a super-massive black hole at the center of an active galaxy, can be achieved if beams from parts of the incoming wavefront separated by 100s of meters can be stably and accurately brought together at small angles. One way of achieving this is by using grazing incidence mirrors. We here investigate an alternative approach in which the beams are recombined by optical elements working in transmission. It is shown that the use of diffractive elements is a particularly attractive option. We report experimental results from a simple 2-beam interferometer using a low-cost commercially available profiled film as the diffractive elements. A rotationally symmetric filled (or mostly filled) aperture variant of such an interferometer, equivalent to an X-ray axicon, is shown to offer a much wider bandpass than either a Phase Fresnel Lens (PFL) or a PFL with a refractive lens in an achromatic pair. Simulations of an example system are presented.
机译:摘要干涉测量为X射线和γ射线天文学提供了超高角度分辨率的可能途径之一。如果将入射波阵面部分的光束分开,则可以实现亚微秒级的角分辨率,以实现诸如对活动大星系中心超大质量黑洞的事件视界周围区域进行成像等目标的目标可以稳定,准确地以小角度将100米的距离放在一起。实现此目的的一种方法是使用掠入射镜。我们在这里研究一种替代方法,其中光束通过在传输中工作的光学元件重组。结果表明,使用衍射元件是特别有吸引力的选择。我们报告了一个简单的2束干涉仪的实验结果,该器件使用了低成本的商用轮廓膜作为衍射元件。这种干涉仪的旋转对称填充(或大部分填充)孔径变体(等效于X射线轴锥)显示的通带范围比相位菲涅尔透镜(PFL)或带折射透镜的PFL宽得多。消色差对。给出了示例系统的仿真。

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