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Highly Reflective Uranium Mirrors for Astrophysics Applications

机译:适用于天体物理应用的高反射铀镜

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The reported optical constants of uranium differ from that of vacuum significantly more than other elements do over the range of about 150 to 350 eV. This suggests that uranium could be used to produce high reflectance imaging mirrors for many soft x-ray applications. Elemental uranium is too chemically active to be used as a front surface mirror without protection. We computed the expected reflectance of carbon-coated uranium films and of uranium-nickel alloys for low-angle reflectors. Carbon is mostly transparent below its K absorption edge at about 283 eV. The reflectance at 10 degrees from grazing is computed to be greater than 50% at 277 eV (C K_α). For comparison, about 5 degrees is the maximum grazing incidence angle for which conventional materials are computed to have comparable reflectance. We sputter deposited and measured the reflectance of carbon-coated uranium layers at 44.7 A (C K_α). Sample reflectance was a factor of two greater than that of nickel, the material used for low-angle mirrors. The initial oxidation behavior of sputtered uranium-nickel alloys is similar to pure U so their reflectance was not 、determined. Coatings based on uranium should be considered for all applications where high-reflectance, broadband, 、low-angle soft x-ray mirrors are required.
机译:在约150至350 eV的范围内,所报道的铀的光学常数与真空的光学常数相比其他元素的差异大得多。这表明铀可用于生产用于许多软X射线应用的高反射率成像镜。元素铀的化学活性太强,无法在没有保护的情况下用作前表面镜。我们计算了碳涂层铀膜和低角度反射器的铀镍合金的预期反射率。碳在大约283 eV的K吸收边缘以下大部分是透明的。计算得出,在277 eV(CK_α)下,从掠射起10度的反射率大于50%。为了比较,大约5度是最大掠入射角,对于该最大掠入射角,计算常规材料以具有可比的反射率。我们溅射沉积并在44.7 A(CK_α)下测量了碳涂层铀层的反射率。样品的反射率是镍的两倍,镍是用于低角度镜的材料。溅射的铀-镍合金的初始氧化行为与纯U相似,因此未确定其反射率。在需要高反射率,宽带,低角度软X射线镜的所有应用中,都应考虑使用基于铀的涂层。

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