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An investigation of differential deposition for figure corrections in full-shell grazing-incidence X-ray optics

机译:全壳体掠入射X射线光学器件中用于图形校正的差分沉积研究

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We are investigating differential deposition as a way of correcting small figure errors inside full-shell grazing-incidence X-ray optics. The optics in our study are fabricated using the electroformed-nickel-replication technique, and the figure errors arise from fabrication errors in the mandrel, from which the shells are replicated, as well as errors induced during the electroforming and mounting process. Combining, these give sub-micron-scale figure deviations which limit the angular resolution of the optics to 10-15 arcsec.rnSub-micron figure errors can be corrected by selectively depositing (physical vapor deposition) material inside the shell. The requirements for this filler material are that it must not degrade the ultra-smooth surface finish necessary for efficient X-ray reflection (~5 Arms), and must not be highly stressed. In addition, a technique must be found to produce well controlled and defined beams within highly constrained geometries, as some of our mirror shells are less than 3 cm in diameter.
机译:我们正在研究微分沉积技术,以纠正全壳掠入射X射线光学器件内部的小图形误差。我们研究中的光学器件是使用电铸镍复制技术制造的,并且图形误差是由心轴中的制造误差(复制壳体所产生的误差)以及在电铸和安装过程中引起的误差引起的。结合起来,这些将产生亚微米级的图形偏差,从而将光学器件的角分辨率限制在10-15arcsec。rn可以通过在壳体内部选择性沉积(物理气相沉积)材料来校正亚微米级图形误差。对这种填充材料的要求是,它不得降低有效X射线反射(约5 Arms)所需的超光滑表面光洁度,并且不得承受很高的压力。此外,由于我们的某些镜壳直径小于3厘米,因此必须找到一种在高度受限的几何形状内产生可控且清晰的光束的技术。

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