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Melting threshold and melt removal dynamics during laser interaction with steel and HgCdTe in femtosecond regime

机译:熔化阈值和熔体移除动力在飞秒中的激光相互作用期间,在飞秒内

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The results of a study of a single 200 femtosecond laser pulse interaction with thick stainless steel and HgCdTe samples are reported. The threshold pulse energies required to produce surface melting are measured. The melt dynamics, material removal rate and evolution of surface morphology were observed for different pulse energies and number of laser pulses. It was observed that, similar to long laser pulse interaction, a layer of melt can be produced at the sample surface. An increase of the pulse energy results in melt ejection in the radial direction toward the periphery of the interaction zone resembling evaporation recoil melt removal typical for laser interactions in the range from nanosecond to cw. The removal of material from stainless steel samples was observed to be highly nonuniform. The columnar structures were observed on the surface of stainless steel samples. The period of these structures is dependent on laser pulse energy and the number of pulses. The observed melting threshold is compared with the theoretical prediction obtained using a two-temperature model.
机译:报道了一种与厚不锈钢和HGCDTE样品的单一200 Femtosecond激光脉冲相互作用的研究结果。测量产生表面熔化所需的阈值脉冲能量。针对不同的脉冲能量和激光脉冲数观察到熔体动力学,材料去除率和表面形态的演化。观察到,类似于长的激光脉冲相互作用,可以在样品表面产生一层熔体。脉冲能量的增加导致沿径向方向熔体喷射朝向相互作用区的周边,类似于纳秒为CW的激光相互作用的典型典型的蒸发反冲熔体去除。观察到从不锈钢样品中除去材料以高度粗。在不锈钢样品的表面上观察到柱状结构。这些结构的时期取决于激光脉冲能量和脉冲的数量。将观察到的熔化阈值与使用双温模型获得的理论预测进行比较。

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