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XRD studies on the femtosecond laser ablated single-crystal germanium in air

机译:飞秒激光烧蚀单晶锗在空气中的XRD研究

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Ultrashort laser ablation of single-crystal germanium has been performed in air with femtosecond laser pulses (150 fs, 1 kHz) of 810 nm in the laser fluence range of 0.7-35.4 J/cm~2. Ablation depth dependence on the laser fluence shows that there are two different processes, which are explained in terms of electronic heating process and the optical penetration one. Structure of ablated region is characterized by means of two different XRD techniques. With increasing the laser fluence higher than 10.2 J/cm~2, the laser-processed region of germanium exhibits poly-crystalline diffraction peaks in a wide-angle (0/20) scan and a split of diffraction peak of (400) plane in the rocking curve, which are absent in the lower laser fluence. These observations could be explained in terms of structural changes induced by ultrashort laser irradiation at the higher laser fluence.
机译:已经在空气中以0.7-35.4 J / cm〜2的飞秒激光脉冲(150 fs,1 kHz)810 nm进行了单晶锗的超短激光烧蚀。烧蚀深度对激光能量密度的依赖性表明,存在两种不同的过程,分别以电子加热过程和光学穿透过程来解释。烧蚀区域的结构借助于两种不同的XRD技术来表征。当激光通量增加到高于10.2 J / cm〜2时,锗的激光加工区域在广角(0/20)扫描中表现出多晶衍射峰,而在(400)平面中衍射峰分裂较低的激光通量不存在的摇摆曲线。这些观察结果可以用在较高激光通量下的超短激光照射引起的结构变化来解释。

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