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首页> 外文期刊>Japanese journal of applied physics >Analysis And Evaluation Of Laser-induced Damage Of Zig-zag Slab Laser Amplifier
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Analysis And Evaluation Of Laser-induced Damage Of Zig-zag Slab Laser Amplifier

机译:之字形平板激光放大器的激光损伤分析与评估

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The laser damage on a total internal reflection (TTR) surface as well as on entrance and exit faces was evaluated to design a zig-zag slab laser. Incorporating a phase shift by the Goos-Haenchen effect on a TIR surface of a laser slab in contact with water, formulas for a laser-induced damage threshold (LIDT) were modified. We determined a method for the designing the geometry of a zig-zag slab laser based on LIDT. A thin film for anti-reflection (AR) with a high LIDT must be formed on the entrance and exit faces of a laser slab glass. A sol-gel thin film was adopted for the AR coating of a high-power laser due to its high LIDT. We devised an effective dip-coating method to form a sol-gel thin film uniformly on a small area. The LIDT of the sol-gel thin film was measured and evaluated with a single mode Q-switch Nd:YAG laser by a one-on-one measurement technique,
机译:对全内反射(TTR)表面以及入射面和出射面的激光损伤进行了评估,以设计曲折平板激光器。通过Goos-Haenchen效应在与水接触的激光平板的TIR表面上引入相移,修改了激光诱导损伤阈值(LIDT)的公式。我们确定了一种基于LIDT的曲折平板激光器的几何设计方法。必须在激光平板玻璃的入射和出射面上形成具有高LIDT的防反射薄膜(AR)。由于其高LIDT,所以采用溶胶-凝胶薄膜作为高功率激光器的增透膜。我们设计了一种有效的浸涂方法以在小面积上均匀地形成溶胶-凝胶薄膜。通过单模Q开关Nd:YAG激光通过一对一测量技术测量和评估溶胶-凝胶薄膜的LIDT,

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