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Effect of voltage and capacitance in nanosecond pulse discharge enhanced laser-induced breakdown spectroscopy

机译:电压和电容在纳秒脉冲放电增强激光诱导击穿光谱中的影响

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摘要

The laser ablation fast pulse discharge plasma spectroscopy (LA-FPDPS) technique has demonstrated its validity to enhance the optical emission of laser-induced plasma. It has the potential to improve the performance of traditional LIBS measurement. Very recently, LA-FPDPS with a nanosecond pulse discharge circuit has been developed, which has a better capability to enhance the optical emission intensity of laser plasma compared with that using a microsecond pulse discharge circuit. In this paper, the effect of the discharge capacitance and discharge voltage on the optical emission of soil plasma generated by LAFPDPS with a nanosecond pulse discharge circuit is evaluated in detail. In addition, the stability of the time delay between the laser firing and discharge, and between the discharge and optical emission, has been carefully investigated.
机译:激光烧蚀快速脉冲放电等离子体光谱(LA-FPDPS)技术已证明其在增强激光诱导等离子体的光发射方面的有效性。它有可能改善传统LIBS测量的性能。最近,已经开发了具有纳秒脉冲放电电路的LA-FPDPS,与使用微秒脉冲放电电路的LA-FPDPS相比,它具有更好的增强激光等离子体的光发射强度的能力。在本文中,详细评估了放电电容和放电电压对用纳秒脉冲放电电路通过LAFPDPS产生的土壤等离子体的光发射的影响。另外,已经仔细研究了激光发射和放电之间以及放电和光发射之间的时间延迟的稳定性。

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