体积修正
高度聚焦的超短脉冲能够对玻璃、蓝宝石及其他晶体等透明材料进行体修饰。通过对激光参数的稳定控制以及对激光焦点在材料内部的精确定位,可刻写诸如布拉格光栅和波导等复杂结构。
这一过程通常由多光子吸收驱动,而多光子吸收需要高强度条件,因此材料仅在焦点处发生改性。激光诱导的材料体改性会影响材料的密度,进而改变其折射率。这是制作光纤布拉格光栅(FBGs)所利用的关键原理 —— 通过诱导折射率变化,在透明材料中写入交替结构,而非对光纤造成光学损伤。单模光纤和双包层光纤中均已实现了光纤布拉格光栅的制作。
此外,经改性的材料可通过化学蚀刻去除。这种两步法工艺称为选择性激光蚀刻。在体改性之后,玻璃或蓝宝石的蚀刻特性会发生改变。因此,通过使用与材料相匹配的蚀刻溶液,能够获得各种机械稳定且耐用的结构,如弯曲波导乃至三维形状。
CARBIDE 和 PHAROS 飞秒激光器被广泛应用于上述所有体改性应用中,为未来技术的发展产生了重要影响。
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