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Heat-affected zone of metals ablated with femtosecond laser pulses

机译:与飞秒激光脉冲的热影响的金属区

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The melted area is found on the surface ablated by nanosecond and picosecond laser pulses. However, the heat effect is little on the ablated surface in the case of femtosecond laser due to non-thermal ablation process. Heat-affected zone of metallic bulk crystal ablated with femtosecond Ti:sapphire laser pulses is experimentally studied. As a result of XRD (X-ray diffraction) measurements, the XRD peak signal of the area ablated with Ti:sapphire laser becomes smaller than that of the crystalline metal sample. While the crystallinity of the metal sample is crystalline before the laser ablation, the crystallinity in the ablated area is partially changed into the amorphous form. Because the residual pulse energy that is not used for the ablation process remains, leading to the formation of thin layer of melt phase. The melt layer is abruptly cooled down not to be re-crystallized, but to transform into the amorphous form. It is evident that the area ablated with femtosecond laser is changed into the amorphous metal. Additionally XRD measurements and Ar~+ etching are performed alternately to measure the thickness of the amorphous layer. In the case of iron, the thickness is measured to be 1 μm approximately, therefore heat-affected zone is quite small.
机译:在纳秒和皮秒激光脉冲烧蚀的表面上发现熔化区域。然而,由于非热消融工艺,在飞秒激光的情况下,热效果几乎没有烧蚀表面。用飞秒Ti烧蚀的金属散装水晶的热影响区域:通过实验研究了蓝宝石激光脉冲。作为XRD(X射线衍射)测量的结果,与Ti烧蚀的区域的XRD峰值信号:蓝宝石激光变得小于结晶金属样品的区域。虽然金属样品的结晶度是在激光烧蚀之前结晶的,但是烧蚀区域中的结晶度部分地被分成无定形形式。因为不用于消融过程的残余脉冲能仍然存在,导致形成薄层熔体相。熔体层突然冷却,不再重结晶,而是转化成无定形形式。显然,与飞秒激光烧蚀的区域被改变成非晶金属。另外,XRD测量和Ar〜+蚀刻交替地进行测量非晶层的厚度。在铁的情况下,厚度测量为1μm,大致为1μm,因此热影响区域非常小。

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