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Time and space resolved microscopy of induced ablation with ultra- short laser pulses

机译:超短激光脉冲引起的时间和空间分辨显微镜

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Laser lift-off processes have been observed during structuring CIS thin film solar cells with ultra-short laser pulses, if a Mo film on glass is irradiated from the glass substrate side. To investigate the underlying physical effects, ultrafast pump-probe microscopy is used for time- and space resolved investigations. The setup utilizes a 660 fs-laser pulse at a wavelength of 1053 nm that is split up into a pump and a probe pulse. The pump pulse ablates the thin film, while the frequency doubled probe pulse illuminates the ablation area after an optically defined delay time of up to 4 ns. For longer delay times, a second electronically triggered 600 ps-laser is used for probing. Thus, the complete ultra fast pulse initiated ablation process can be observed in a delay time range from femtoseconds to microseconds. First experiments on the directly induced ablation of molybdenum films from the glass substrate side show that mechanical deformation is initiated at about 400 ps after the impact of the pump laser pulse. The deformation continues until approximately 15 ns, then a Mo disk shears and lifts-off with a velocity of above 70 m/s free from thermal effects.
机译:如果从玻璃基板一侧照射玻璃上的Mo膜,则在用超短激光脉冲构造CIS薄膜太阳能电池时会观察到激光剥离过程。为了研究潜在的物理效应,超快泵浦探针显微镜用于时间和空间分辨的研究。该设置利用波长为1053 nm的660 fs激光脉冲,该脉冲分为泵浦脉冲和探测脉冲。泵浦脉冲烧蚀薄膜,而倍频的探测脉冲在经过长达4 ns的光学定义延迟时间后照亮烧蚀区域。对于更长的延迟时间,第二个电子触发的600 ps激光用于探测。因此,可以在从飞秒到微秒的延迟时间范围内观察到完整的超快脉冲启动的消融过程。从玻璃基板一侧直接感应烧蚀钼膜的第一个实验表明,在泵浦激光脉冲的冲击之后,机械变形在大约400 ps时开始。变形持续到大约15 ns,然后Mo盘以高于70 m / s的速度剪切和升起,不受热影响。

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