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Achromatic Fresnel optics for wideband extreme-ultraviolet and X-ray imaging

机译:用于宽带极紫外和X射线成像的消色差菲涅耳光学器件

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摘要

Advances in extreme-ultraviolet (EUV) and X-ray optics are providing powerful new capabilities in high-resolution imaging and trace-element analysis of microscopic specimens, and the potential for fabricating devices of smaller critical dimensions in next-generation integrated circuit lithography. However, achieving the highest resolution with such optics usually requires the illuminating EUV or X-ray beam to be highly monochromatic. It would therefore be highly desirable to have large-field-of-view, sub-100-nm resolution optics that are achromatic to a significant degree, allowing more light to be utilized from broader bandwidth sources such as laser-produced plasmas. Here we report an achromatic Fresnel optical system for EUV or X-ray radiation that combines a Fresnel zone plate with a refractive lens with opposite chromatic aberration. We use the large anomalous dispersion property of the refractive lens material near an absorption edge to make its fabrication practical. The resulting structure can deliver a resolution comparable to that of the Fresnel zone plates that have achieved the highest resolution (25 nm; ref. 3) in the entire electromagnetic spectrum, but with an improvement of two or more orders of magnitude in spectral bandwidth.
机译:极紫外(EUV)和X射线光学技术的进步为显微样品的高分辨率成像和痕量元素分析提供了强大的新功能,并为下一代集成电路光刻中制造更小临界尺寸的器件提供了潜力。然而,用这种光学器件实现最高分辨率通常需要照明的EUV或X射线束是高度单色的。因此,非常需要具有很大程度消色差的大视野,低于100 nm分辨率的光学器件,从而允许从更宽的带宽源(例如激光产生的等离子体)中利用更多的光。在这里,我们报告了用于EUV或X射线辐射的消色差菲涅耳光学系统,该系统将菲涅耳波带片与具有相反色差的折射透镜结合在一起。我们利用折射透镜材料在吸收边缘附近的大的异常色散特性来使其实用。所得到的结构可以提供与在整个电磁频谱中实现最高分辨率(25 nm;参考文献3)的菲涅耳波带片可比的分辨率,但是在光谱带宽上提高了两个或多个数量级。

著录项

  • 来源
    《Nature》 |2003年第6944期|p.50-53|共4页
  • 作者单位

    Xradia, Inc., 4075A Spring Drive, Concord, California 94520, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

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