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Unidirectionally oriented nanocracks on metal surfaces irradiated by low-fluence femtosecond laser pulses

机译:低通量飞秒激光脉冲在金属表面单向取向的纳米裂纹

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摘要

We have investigated the origin of nanostructures formed on metals by low-fluence femtosecond laser pulses. Nanoscale cracks oriented perpendicular to the incident laser polarization are induced on tungsten, molybdenum, and copper targets. The number density of the cracks increases with the number of pulses, but crack length plateaus. Electromagnetic field simulation by the finite-difference time-domain method indicates that electric field is locally enhanced along the direction perpendicular to the incident laser polarization around a nanoscale hole on the metal surface. Crack formation originates from the hole.
机译:我们已经研究了通过低通量飞秒激光脉冲在金属上形成的纳米结构的起源。垂直于入射激光偏振的纳米级裂纹在钨,钼和铜靶上产生。裂纹的数量密度随脉冲数量的增加而增加,但裂纹长度却保持平稳。通过有限差分时域方法进行的电磁场模拟表明,在垂直于金属表面纳米级孔周围入射激光偏振方向的方向上,电场得到了局部增强。裂纹的形成源​​自孔。

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