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Fresnel lenses for X-ray and Gamma-ray Astronomy

机译:菲涅耳透镜,用于X射线和伽马射线天文学

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Phase Fresnel lenses have the same imaging properties as zone plates, but with the possibility of concentrating all of the incident power into the primary focus, increasing the maximum theoretical efficiency from 11% to close to 100%. For X-rays, and in particular for gamma-rays, large, diffraction-limited phase Fresnel lenses can be made relatively easily. The focal length is very long - for example up to a million kms. However, the correspondingly high 'plate-scale' of the image means that the ultra-high (sub-micro-arc-second) angular resolution possible with a diffraction limited gamma-ray lens a few metres in diameter can be exploited with detectors having mm spatial resolution. The potential of such systems for ultra-high angular resolution astronomy, and for attaining the sensitivity improvements desperately needed for certain other studies, are reviewed and the advantages and disadvantages vis-a-vis alternative approaches are discussed. We report on reduced-scale 'proof-of-principle tests' which are planned and on mission studies of the implementation of a Fresnel telescope on a space mission with lens and detector on two spacecraft separated by one million km. Such a telescope would be capable of resolving emission from super-massive black holes on the scale of their event horizons and would have the sensitivity necessary to detect gamma-ray lines from distant supernovae. We show how diffractive/refractive optics leads to a continuum of possible system designs between filled aperture lenses and wideband interferometric arrays.
机译:菲涅尔相位透镜具有与波带片相同的成像特性,但是可以将所有入射光集中到主要焦点上,从而将最大理论效率从11%提高到接近100%。对于X射线,特别是对于伽马射线,可以相对容易地制造大的,衍射受限的菲涅耳透镜。焦距非常长-例如长达一百万公里。但是,图像的相应“平板比例”较高,这意味着使用具有以下特征的探测器可以利用直径为几米的受衍射限制的伽玛射线透镜实现超高(亚微弧秒)角分辨率毫米的空间分辨率。审查了这种系统用于超高角分辨率天文学的潜力,以及获得某些其他研究迫切需要的灵敏度提高的潜力,并讨论了相对于其他方法的优缺点。我们报告了已计划的缩小规模的“原理验证测试”,以及关于在间隔100万公里的两架航天器上使用透镜和探测器进行的太空任务中菲涅耳望远镜的实施研究的任务研究。这种望远镜将能够解决超大质量黑洞在其事件视界范围内的发射,并且具有检测远处超新星的伽马射线所必需的灵敏度。我们展示了衍射/折射光学器件如何在填充光圈透镜和宽带干涉仪阵列之间导致可能的系统设计的连续性。

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