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首页> 外文期刊>Applied optics >Geometrical characteristics and damage morphology of nodules grown from artificial seeds in multilayer coating
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Geometrical characteristics and damage morphology of nodules grown from artificial seeds in multilayer coating

机译:多层涂层中人工种子生长的根瘤的几何特征和损伤形态

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Nodules have been planted in an HfO_(2)/SiO_(2) multilayer system with absorptive gold nanoparticle seeds located on the surface of a substrate. The topography of nodules was scanned by an atomic force microscope and imaged by a scanning electron microscope. The underlying characteristics of nodules were revealed by a focused ion beam. The cross-sectional profiles reveal that nodules grown from small seeds have a continuous boundary and better mechanical stability. A laser-induced damage test shows that nodules decrease the laser-induced damage threshold by up to 3 times. The damage pits are exclusively caused by nodular ejection and triggered by the absorptive seeds. The distribution of electric field and average temperature rise in the nodules were analyzed. Theoretical results met experimental results very well. The strong absorptive seed and microlens effect of the nodule play important roles in laser-induced damage of a planted nodule.
机译:结节已种植在HfO_(2)/ SiO_(2)多层系统中,吸收性金纳米粒子种子位于基质表面。结节的形貌通过原子力显微镜扫描并通过扫描电子显微镜成像。聚焦离子束揭示了结核的基本特征。横截面轮廓表明,由小种子生长的结节具有连续的边界和更好的机械稳定性。激光引起的损伤测试表明,结节可使激光引起的损伤阈值降低多达3倍。损伤坑完全是由结节状弹射引起的,并由吸收性种子触发。分析了结节中的电场分布和平均温度上升。理论结果与实验结果非常吻合。结节的强吸收种子和微透镜效应在激光诱导的种植结节损害中起重要作用。

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