首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >The influence of laser-particle interaction in laser induced breakdown spectroscopy and laser ablation inductively coupled plasma spectrometry
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The influence of laser-particle interaction in laser induced breakdown spectroscopy and laser ablation inductively coupled plasma spectrometry

机译:激光相互作用击穿光谱和激光烧蚀电感耦合等离子体光谱中激光-颗粒相互作用的影响

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摘要

Particles produced by previous laser shots may have significant influence on the analytical signal in laser-induced breakdown spectroscopy (UBS) and laser ablation inductively coupled plasma (LA-ICP) spectrometry if they remain close to the position of laser sampling. The effects of these particles on the laser-induced breakdown event are demonstrated in several ways. UBS-experiments were conducted in an ablation cell at atmospheric conditions in argon or air applying a dual-pulse arrangement with orthogonal pre-pulse, i.e., plasma breakdown in. a gas generated by a focussed laser beam parallel and close to the sample surface followed by a delayed crossing laser pulse in orthogonal direction which actually ablates material from the sample and produces the LIBS plasma. The optical emission of the LIBS plasma as well as the absorption of the pre-pulse laser was measured. In the presence of particles in the focus of the pre-pulse laser, the plasma breakdown is affected and more energy of the pre-pulse laser is absorbed than without particles. As a result, the analyte line emission from the LIBS plasma of the second laser is enhanced, it is assumed that the enhancement is not only due to an increase of mass ablated by the second laser but also to better atomization and excitation conditions favored by a reduced gas density in the pre-pulse plasma. Higher laser pulse frequencies increase the probability of particle-laser interaction and, therefore, reduce the shot-to-shot line intensity variation as compared to lower particle loadings in the cell. Additional experiments using an aerosol chamber were performed to further quantify the laser absorption by the plasma in dependence on time both with and without the presence of particles. The overall implication of laser-particle interactions for LIBS and LA-ICP-MS/OES are discussed.
机译:如果以前的激光发射产生的粒子保持在靠近激光采样位置的位置,则它们可能会对激光诱导击穿光谱(UBS)和激光烧蚀感应耦合等离子体(LA-ICP)光谱中的分析信号产生重大影响。这些粒子对激光诱发的击穿事件的影响已通过多种方式得到证明。 UBS实验是在烧蚀室中在大气条件下在氩气或空气中应用具有正交预脉冲的双脉冲装置进行的,即,等离子体的分解是通过平行于并靠近样品表面的聚焦激光束产生的气体中的等离子击穿。通过在正交方向上延迟的交叉激光脉冲,实际上会从样品中烧蚀掉材料并产生LIBS等离子体。测量了LIBS等离子体的光发射以及预脉冲激光的吸收。在预脉冲激光的焦点中存在颗粒的情况下,与没有颗粒相比,等离子体击穿受到影响,并且预脉冲激光的能量被吸收得更多。结果,第二激光的LIBS等离子体的分析物线发射得到了增强,可以认为这种增强不仅是由于第二激光的烧蚀质量增加,而且是由于更好的雾化和激发条件所致。降低了预脉冲等离子体中的气体密度。较高的激光脉冲频率增加了粒子与激光相互作用的可能性,因此,与电池中较低的粒子负载相比,降低了粒子之间的线强度变化。进行了使用气溶胶室的其他实验,以根据存在和不存在颗粒的时间进一步量化等离子体对激光的吸收。讨论了LIBS和LA-ICP-MS / OES的激光粒子相互作用的整体含义。

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