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Fabrication Of Sub-wavelength Surface Ripples And In-volume Nanostructures By Fs-laser Induced Selective Etching

机译:Fs激光诱导选择性刻蚀制备亚波长表面波纹和大体积纳米结构

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Continuous sub-wavelength ripples on the surface of sapphire and fused silica have been produced not only in one dimension but also in two dimensions by scanning several tracks with an offset. This results in the formation of an extended grating. By investigation of cross-sections of sub-wavelength ripples a surprising high aspect ratio of larger than 10 is observed in the case of fused silica and a aspect ratio of about 2.5 in the case of sapphire. Using in-volume selective laser etching hollow nanoplanes (~200 nm in width, 1 mm in length) and nano-channels (~100 nm in diameter) are obtained in sapphire. By scanning in the volume of sapphire and fused silica, structures very similar to the surface sub-wavelength ripples are observed in the volume. A common feed-back mechanism for both the formation of coherent sub-wavelength surface ripples and nanoplanes in the volume is discussed.
机译:通过偏移扫描多个轨迹,不仅在一个维度上而且还在二维上在蓝宝石和熔融石英表面上产生了连续的亚波长波纹。这导致形成扩展的光栅。通过研究亚波长波纹的横截面,在熔融石英的情况下观察到了令人惊讶的高长径比,大于10,而在蓝宝石的情况下,长径比约为2.5。使用批量选择激光蚀刻,可以在蓝宝石中获得空心纳米平面(宽约200 nm,长1 mm)和纳米通道(直径约100 nm)。通过扫描蓝宝石和熔融石英的体积,可以在该体积中观察到与表面亚波长波纹非常相似的结构。讨论了用于在体积中形成相干亚波长表面波纹和纳米平面的常见反馈机制。

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