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Effect of applied voltage and inter-pulse delay in spark-assisted LIBS

机译:施加电压和脉冲间延迟在火花辅助Libs中的影响

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We report the results obtained in an investigation on the effect of the time delay between the laser and electrical pulses in a spark-assisted laser-induced breakdown spectroscopy (LIBS) experiment. The electrical discharge is produced by the discharge of a charged coaxial cable. This arrangement produces a fast unipolar current pulse (500 ns) that applies high power (similar to 600 kW) to the laser ablation plasma. The delay between the laser pulse and the electric pulse can be controlled at will in order to find the optimal time in terms of enhancement of the emitted lines. It was found that the application of the high voltage pulse enhances the ionic lines emitted by up to two orders of magnitude. An additional enhancement by a factor of 2-4 can be obtained delaying the application of the electric pulse by a time of 0.6-20 is. In the tests it was noticed that the ionic lines were found to be clearly responsive to increments in the applied electric energy while the neutral lines did so marginally. Our results show that the intensification of the lines is mainly due to reheating of the ablation plasma as the application of the electrical pulse increments the temperature of the ablation plasma by about 50%. It is demonstrated that the present technique is an efficient way of intensifying the lines emitted without incurring in additional damage to the sample. (C) 2018 Elsevier B.V. All rights reserved.
机译:我们报告了在火花辅助激光诱导的击穿光谱(LIBS)实验中激光和电脉冲之间的时间延迟效果的研究中获得的结果。通过电荷的同轴电缆的放电产生放电。这种布置产生快速的单极电流脉冲(500ns),其将高功率(类似于600kW)施加到激光烧蚀等离子体上。可以控制激光脉冲和电脉冲之间的延迟,以便在发出线的增强方面找到最佳时间。发现高压脉冲的应用增强了最多两个数量级发射的离子线。可以获得额外的增强倍数2-4,可以延迟电脉冲的施加0.6-20的时间。在测试中,注意到发现离子线在施加的电能中的增量显然是响应于施加的电能,而中性线条如此辉长。我们的研究结果表明,线的强化主要是由于烧蚀等离子体的再加热,因为电脉冲的施加将消融等离子体的温度递增约50%。结果证明,本技术是强化发射的线的有效方式,而不会产生额外的样品损坏。 (c)2018 Elsevier B.v.保留所有权利。

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