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Experimental and theoretical investigation of the effect of laser parameters on laser ablation and laser-induced plasma formation

机译:激光参数对激光烧蚀和激光诱导等离子体形成影响的实验与理论研究

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We report results from a wide range of laser operating conditions, typical for laser induced breakdown spectroscopy (LIBS) and laser ablation (LA) experiments on copper metallic target, which form the basis of further systematically investigation of the effect of laser irradiance, pulse duration and wavelength, on the target, plume and plasma behavior, during and after laser-solid interaction. In the LA experiment, the laser beam was focused through a 25 cm focal length convergent lens on a plane copper target in air, at atmospheric pressure. The target was rotated in order to have fresh areas under laser irradiance. In the LIBS experiment, the Applied Photonics LIBS-6 instrument allowed modifying the laser irradiance at the sample surface by changing the pulse energy or the laser focusing distance. For the duration of the laser pulse, the power density at the surface of the target material exceeds 10~9 W/cm~2 using only a compact laser device and simple focusing lenses. The plasma parameters were experimentally estimated from spectroscopic data generated by the plasma itself, namely by the line intensities and their ratio which reflect the relative population of neutral or ionic excited species in the plasma. The fitting of the Saha-Boltzmann plot to a straight line provides an apparent ionization temperature, whose value depends on the lines used in the plots. For the typical conditions of LA and LIBS, the temperature can be so high that Cu~+ ions are formed. The first-order ionization of Cu (i.e., the ratio of Cu~+/Cu~0 ) is calculated.
机译:我们报告了广泛的激光操作条件的结果,典型的激光诱导击穿光谱(Libs)和铜金属靶标的激光烧蚀(La)实验,这构成了进一步系统地研究激光辐照度,脉冲持续时间的效果的基础和波长,在目标,羽毛和等离子体行为,激光固体相互作用期间和之后。在LA实验中,激光束在空气中的平面铜靶中聚焦到25cm焦距会聚透镜,在大气压下。旋转目标以使激光辐照度下的新区域。在LIBS实验中,所应用的光子液LIBS-6仪器通过改变脉冲能量或激光聚焦距离来改变样品表面的激光辐照度。对于激光脉冲的持续时间,仅使用紧凑的激光装置和简单的聚焦透镜,目标材料表面的功率密度超过10〜9w / cm〜2。通过等离子体本身产生的光谱数据实验估计等离子体参数,即通过线强度和它们反映等离子体中中性或离子激发物质的相对群体的比率。将Saha-Boltzmann图的装配到直线提供表观电离温度,其值取决于图中使用的线。对于La和Libs的典型条件,温度可以如此高,形成Cu〜+离子。计算Cu的一阶电离(即,Cu〜+ / Cu〜0的比例)。

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