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Transformations induced in bulk amorphous silica by ultrafast laser direct writing

机译:超快激光直接写入在块状无定形二氧化硅中诱导的转变

摘要

A transmission electron microscopy study of nanogratings formed in bulk amorphous silica by direct writing with an ultrafast pulsed laser with a radiation wavelength of 1030 nm and pulse duration of 560 fs is presented. The results achieved show that the nanogratings are composed of planar nanostructures with an average periodicity of 250 nm and typical thickness of about 30 nm, consisting of alternating layers of heavily damaged material and layers of material where a dense precipitation of nanocrystals occurred. The crystallization of silica to form these nanocrystals can be explained by the large pressures and temperatures reached in these regions as a result of nanoplasma formation and recombination. © 2013 Optical Society of America.
机译:透射电子显微镜研究了在块状无定形二氧化硅中形成的纳米光栅,该纳米光栅是通过用超快脉冲激光直接写入形成的,该超快脉冲激光的辐射波长为1030 nm,脉冲持续时间为560 fs。所获得的结果表明,纳米光栅由平均周期为250 nm,典型厚度为约30 nm的平面纳米结构组成,由严重受损材料的交替层和发生纳米晶密集沉淀的材料层交替组成。二氧化硅的结晶形成这些纳米晶体可以通过纳米等离子体形成和重组在这些区域中达到的高压力和高温来解释。 ©2013美国眼镜学会。

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