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Effect of sample temperature on time-resolved laser-induced breakdown spectroscopy

机译:采样温度对时间分辨激光诱导的击穿光谱的影响

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Increasing sample temperature is an effective method for improving emission intensity of laser-induced breakdown spectroscopy (LIBS). An increase in the sample temperature requires only simple modification to LIBS system, and does not require sample pretreatment. In addition, the formation and decay of laser-induced plasma (LIP) are a dynamic physical process. Time-resolved spectroscopy can enrich the dynamic information of LIBS and increase data dimension. The further analysis of the time-resolved LIBS data has the potential to understand the physical process. In this study, a beam of nanosecond laser was used to excite brass sample to produce plasma. The time-resolved spectroscopy of the LIP was measured at different sample temperatures. The results indicated that increasing sample temperature improved optical emission intensity in LIBS, and increased the plasma persistence. We also obtained plasma temperature and electron density at different sample temperatures. The time-resolved plasma temperature and electron density in the case with higher sample temperature were higher than those in the case with lower sample temperature. Moreover, the decay of electron density at higher sample temperature was faster than that at lower sample temperature.
机译:提高样品温度是改善激光诱导击穿光谱(LIBS)发射强度的有效方法。样品温度的增加仅需要简单地修改Libs系统,并且不需要样品预处理。此外,激光诱导等离子体(唇)的形成和衰减是动态物理过程。时间分辨光谱可以丰富Libs的动态信息并增加数据维度。对时间分辨率数据的进一步分析有可能理解物理过程。在该研究中,使用纳秒激光束激发黄铜样品以产生等离子体。在不同的样品温度下测量唇唇的时间分辨光谱。结果表明,提高样品温度提高了LIBS中的光学发射强度,并增加了等离子体持久性。我们还在不同的样品温度下获得等离子体温度和电子密度。样品温度较高的情况下的时间分辨的等离子体温度和电子密度高于样品温度较低的情况。此外,在更高的样品温度下的电子密度衰减比在更低的样品温度下的衰减。

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