Detalle Vincent, Sabsabi Mohamad, St-Onge Louis, Hamel André, Héon René
Industrial Materials Institute, National Research Council of Canada, 75 de Mortagne Boulevard, Boucherville, Quebec J4B 6Y4, Canada.
Appl Opt. 2003 Oct 20;42(30):5971-7. doi: 10.1364/ao.42.005971.
Laser-induced breakdown spectroscopy (LIBS) is widely dependent on the conditions of its implementation in terms of laser characteristics (wavelength, energy, and pulse duration), focusing conditions, and surrounding gas. In this study two wavelengths, 1.06 and 2.94 microm, obtained with Nd:YAG and Er:YAG lasers, respectively, were used for LIBS analysis of aluminum alloy samples in two conditions of surrounding gas. The influence of the laser wavelength on the laser-produced plasma was studied for the same irradiance by use of air or helium as a buffer gas at atmospheric pressure. We used measurements of light emission to determine the temporally resolved space-averaged electron density and plasma temperature in the laser-induced plasma. We also examined the effect of laser wavelength in two different ambient conditions in terms of spectrochemical analysis by LIBS. The results indicate that the effect of the surrounding gas depends on the laser wavelength and the use of an Er:YAG laser could increase linearity by limiting the leveling in the calibration curve for some elements in aluminum alloys. There is also a significant difference between the plasma induced by the two lasers in terms of electron density and plasma temperature.
激光诱导击穿光谱法(LIBS)在很大程度上取决于其实施条件,包括激光特性(波长、能量和脉冲持续时间)、聚焦条件和周围气体。在本研究中,分别用Nd:YAG和Er:YAG激光器获得的1.06微米和2.94微米这两个波长,用于在两种周围气体条件下对铝合金样品进行LIBS分析。在相同辐照度下,以空气或氦气作为大气压下的缓冲气体,研究了激光波长对激光产生的等离子体的影响。我们通过测量光发射来确定激光诱导等离子体中时间分辨的空间平均电子密度和等离子体温度。我们还根据LIBS的光谱化学分析,研究了在两种不同环境条件下激光波长的影响。结果表明,周围气体的影响取决于激光波长,使用Er:YAG激光可以通过限制铝合金中某些元素校准曲线的平缓程度来提高线性度。在电子密度和等离子体温度方面,两种激光诱导的等离子体之间也存在显著差异。