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CW-laser induced modification in glasses by laser backside irradiation (LBI)

机译:连续激光在玻璃中通过激光背面照射(LBI)引起的改性

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We describe modification of various glasses by a CW Laser Backside Irradiation (CW-LBI) method. In this method, an absorbent which was attached on one side of a glass sheet, was irradiated from the other side through the glass with CW laser beam. Ar ion laser was used and copper foil was chosen as an absorbent. Silica, Pyrex and soda-lime glasses were tested as sample glasses. When the absorbent was irradiated, heated spot appeared in the glass adjacent to the absorbent and it ran to the other side of the glass in the path of laser beam. Then cylindrical modified zone that was transparent and crack-free was produced. Diameter of the modified column was 30~100 μm and the cylinder could grow up to 30 mm. The growth rate was approximately 200 mm/s. The dimension of modified zone depended on irradiation conditions, such as laser fluence or beam profiles. The threshold fluences for modification of the glasses were 1~2.5x 10~5 W/cm~2. Then the characteristics of modified zone were examined by etching in 5 wt. % HF solution. As a result, it turned out that modified zone consisted of two layers and etching rate of the inner part was lower than that of the outer part. The Raman spectroscopy revealed that the density of the inner part increased by the modification.
机译:我们描述了通过CW激光背面照射(CW-LBI)方法对各种眼镜的修改。在这种方法中,用CW激光束从另一侧通过玻璃辐照附着在玻璃板一侧上的吸收剂。使用Ar离子激光器,并选择铜箔作为吸收剂。二氧化硅,派热克斯玻璃和钠钙玻璃作为样品玻璃进行了测试。当吸收剂被照射时,加热的斑点出现在与吸收剂相邻的玻璃中,并且在激光束的路径中加热的点跑到玻璃的另一侧。然后产生透明且无裂纹的圆柱形改性区。改性柱的直径为30〜100μm,圆柱体可以长到30 mm。生长速度约为200mm / s。修改区的尺寸取决于辐照条件,例如激光注量或光束轮廓。修饰玻璃的阈值通量为1〜2.5x 10〜5 W / cm〜2。然后通过在5 wt。 %HF溶液。结果发现,改性区由两层组成,内部的蚀刻速率低于外部的蚀刻速率。拉曼光谱表明,内部密度通过修饰而增加。

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