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首页> 外文期刊>AIP Advances >Shock wave plasma induced emission generated by low energy nanosecond Nd:YAG laser in open air and its application to quantitative Cr analysis of low alloy steel
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Shock wave plasma induced emission generated by low energy nanosecond Nd:YAG laser in open air and its application to quantitative Cr analysis of low alloy steel

机译:低能量纳秒Nd:YAG激光在露天中产生的冲击波等离子体诱导发射及其在低合金钢定量CR分析中的应用

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We report the result of an experimental study that shows the remarkable benefits of generating a micro shock wave plasma by low energy (800 μJ) nanosecond (ns) Nd:YAG laser irradiation on a solid target in open air and the efficient detection of the induced plasma emission. The very low irradiation power density of 0.8 MW/cmsup2/sup produced by the slightly defocused laser beam gives the additional advantage of rather wide crater size of 400 μm on the sample surface, thus enabling average analysis and reducing the ion production responsible for the undesirable emission background as well as the Stark broadening effect, and thus leading to largely improved spectral quality. This is corroborated by the result of spectra measured from a number of metal samples which display the sharp emission lines with low background. Specifically, its application to Cr analysis of a series of low alloy steel samples with different Cr concentrations is shown to yield a linear calibration line of adequate dynamical range and an estimated detection limit of about 10 ppm.
机译:我们报告了实验研究的结果,其表示通过低能量(800μJ)纳秒(NS)Nd:YAG激光照射在露天的固体目标上产生显着益处,并有效地检测诱导的等离子体排放。由略微散焦激光束产生的0.8mW / cm 2 的非常低的照射功率密度为样品表面提供了相当宽的火山口尺寸的额外优点,从而实现平均分析和减少离子生产负责不希望的发射背景以及显着的扩展效果,从而导致谱质量大大提高。这通过从多个金属样品中测量的光谱结果来证实,该金属样本具有低背景的尖锐排放线。具体地,其在CR分析的应用中,具有不同Cr浓度的一系列低合金钢样品,得到了足够的动态范围的线性校准线,估计的检测限为约10ppm。

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