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Profile reconstruction of grazing-incidence X-ray mirrors from intra-focal X-ray full imaging

机译:从焦点内X射线全像重建掠入射X射线镜的轮廓

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摘要

The optics of a number of future X-ray telescopes will have very long focal lengths (10 - 20 m), and will consist of a number of nested/stacked thin, grazing-incidence mirrors. The optical quality characterization of a real mirror can be obtained via profile metrology, and the Point Spread Function of the mirror can be derived via one of the standard computation methods. However, in practical cases it can be difficult to access the optical surfaces of densely stacked mirror shells, after they have been assembled, using the widespread metrological tools. For this reason, the assessment of the imaging resolution of a system of mirrors is better obtained via a direct, full-illumination test in X-rays. If the focus cannot be reached, an intra-focus test can be performed, and the image can be compared with the simulation results based on the metrology, if available. However, until today no quantitative information was extracted from a full-illumination, intra-focal exposure. In this work we show that, if the detector is located at an optimal distance from the mirror, the intensity variations of the intra-focal, full-illumination image in single reflection can be used to reconstruct the profile of the mirror surface, without the need of a wavefront sensor. The Point Spread Function can be subsequently computed from the reconstructed mirror shape. We show the application of this method to an intra-focal (8 m distance from mirror) test performed at PANTER on an optical module prototype made of hot-slumped glass foils with a 20 m focal length, from which we could derive an expected imaging quality near 16 arcsec HEW.
机译:未来许多X射线望远镜的光学器件将具有很长的焦距(10-20 m),并将由许多嵌套/堆叠的薄的掠入射镜组成。可以通过轮廓度量获得真实反射镜的光学质量表征,并且可以通过一种标准计算方法得出反射镜的点扩展函数。然而,在实际情况下,在组装完密集堆叠的镜壳后,使用广泛的计量工具可能难以接近它们的光学表面。因此,通过直接在X射线中进行全照明测试,可以更好地评估反射镜系统的成像分辨率。如果无法达到焦点,则可以执行焦点内测试,并且可以将图像与基于度量的模拟结果进行比较(如果有)。然而,直到今天,仍没有从全照明,焦点内曝光中提取定量信息。在这项工作中,我们表明,如果检测器位于距镜子最佳距离的位置,则可以使用单反射焦点内全照明图像的强度变化来重建镜子表面的轮廓,而无需需要波前传感器。随后可以从重构的镜面形状计算出点扩展函数。我们展示了该方法在PANTER上对由焦距为20 m的热塌陷玻璃箔制成的光学模块原型进行的焦内(距镜面8 m距离)测试中的应用,由此可以得出预期的成像质量接近16 arcsec HEW。

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  • 来源
    《Optics for EUV, x-ray, and gamma-ray astronomy VI》|2013年|88611F.1-88611F.17|共17页
  • 会议地点 San Diego CA(US)
  • 作者单位

    INAF/ Osservatorio Astronomico di Brera, Via E. Bianchi 46, 23807 Merate, Italy;

    INAF/ Osservatorio Astronomico di Brera, Via E. Bianchi 46, 23807 Merate, Italy;

    European Space Agency, ESTEC, Noordwjik, Netherlands;

    Max-Planck Instituet fur Extraterrestr. Physik, Giessenbach Strasse, 85471 Garching, Germany;

    INAF/ Osservatorio Astronomico di Brera, Via E. Bianchi 46, 23807 Merate, Italy;

    INAF/ Osservatorio Astronomico di Brera, Via E. Bianchi 46, 23807 Merate, Italy;

    INAF/ Osservatorio Astronomico di Brera, Via E. Bianchi 46, 23807 Merate, Italy;

    Max-Planck Instituet fur Extraterrestr. Physik, Giessenbach Strasse, 85471 Garching, Germany;

    Max-Planck Instituet fur Extraterrestr. Physik, Giessenbach Strasse, 85471 Garching, Germany;

    INAF/ Osservatorio Astronomico di Brera, Via E. Bianchi 46, 23807 Merate, Italy;

    Max-Planck Instituet fur Extraterrestr. Physik, Giessenbach Strasse, 85471 Garching, Germany;

    INAF/ Osservatorio Astronomico di Brera, Via E. Bianchi 46, 23807 Merate, Italy,Universita dell'Insubria, Via Valleggio 11, 22100 Como, Italy;

    INAF/ Osservatorio Astronomico di Brera, Via E. Bianchi 46, 23807 Merate, Italy;

    European Space Agency, ESTEC, Noordwjik, Netherlands;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    X-ray mirrors; profile reconstruction; intra-focus imaging;

    机译:X射线镜;轮廓重建;焦点内成像;

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