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Investigation of nonuniform surface properties of classically manufactured fused silica windows

机译:经典制造的熔融石英窗的非均匀性表面性能研究

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摘要

We report on investigations of the spatial variations of contamination, roughness, and index of refraction of classically manufactured polished fused silica surfaces. Therefore, laser-induced breakdown spectroscopy was used to probe surface and subsurface impurities via the detection of aluminum. Measurements at different positions on the surface of the cylindrical fused silica windows evidenced an almost contamination-free center region, whereas a relatively large contamination area was found close to the edge. In-depth measurements verify the presence of aluminum atoms in the bulk until a depth of several tens of microns for the edge region. In addition, atomic force microscopic measurements show that the surface roughness is larger in the center region compared to the edge. Further, the index of refraction increases from the center region towards the edge as measured via ellipsometry. The results indicate a nonuniform impact of the grinding, lapping, and polishing tools on the surface. The findings turn out to be of specific interest for different applications, particularly for the realization of large-scale high-performance coatings. (C) 2017 Optical Society of America
机译:我们报告了经典制造的抛光二氧化硅表面的污染,粗糙度和折射率的空间变化的调查。因此,激光诱导的击穿光谱通过检测铝探测表面和地下杂质。在圆柱形熔融二氧化硅窗口表面上的不同位置的测量证明了几乎污染的中心区域,而发现相对大的污染区域靠近边缘。深入测量验证散装中铝原子的存在,直到边缘区域的几十微米的深度。另外,原子力微观测量表明,与边缘相比,中心区域的表面粗糙度较大。此外,通过椭圆形测量测量,折射率从中心区域朝向边缘增加。结果表明,表面上的研磨,研磨和抛光工具的非均匀影响。结果表明,对不同应用的特定兴趣,特别是为了实现大型高性能涂料。 (c)2017年光学学会

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  • 来源
    《Applied optics》 |2017年第26期|共8页
  • 作者单位

    Univ Appl Sci &

    Arts Fac Nat Sci &

    Technol Von Ossietzky Str 99 D-37085 Gottingen Germany;

    Univ Appl Sci &

    Arts Fac Nat Sci &

    Technol Von Ossietzky Str 99 D-37085 Gottingen Germany;

    Aix Marseille Univ CNRS Lab Lasers Plasmas &

    Proc Photon LP3 163 Ave Luminy F-13288 Marseille France;

    Aix Marseille Univ CNRS Lab Lasers Plasmas &

    Proc Photon LP3 163 Ave Luminy F-13288 Marseille France;

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  • 正文语种 eng
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