高压放电增强飞秒激光诱导等离子体光谱研究
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High-voltage discharge-enhanced femtosecond laser-induced plasma spectroscopy
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    摘要:

    针对传统飞秒激光诱导等离子体光谱信号强度低、检测灵敏度有限的问题,提出一种高压放电增强飞秒激光诱导等离子体光谱方法。采用放电辅助增强飞秒激光诱导等离子体光谱,以铜元素为研究对象,对比分析不同放电条件下的光谱响应以及整个过程的时间分辨光谱特征。实验结果表明:放电可显著提升光谱信号强度,在7 kV条件下,Cu II 521 nm、Cu I 578 nm和Cu I 793 nm三条谱线的强度相较无放电条件分别增强约22倍、31倍和36倍,不同谱线对电压的响应存在差异。时间分辨光谱表明放电增强信号主要源于等离子体荧光寿命延长。研究成果为发展高灵敏度、高稳定性等离子体光谱分析技术提供重要参考,对推动激光诱导等离子体光谱在材料分析、痕量检测等相关领域的应用具有积极意义。

    Abstract:

    To address the low signal intensity and limited detection sensitivity of traditional femtosecond laser-induced plasma spectroscopy, the high-voltage discharge-enhanced femtosecond laser-induced plasma spectroscopy method has been proposed. Using discharge-assisted femtosecond laser-induced plasma spectroscopy, taking copper element as the research object, this study comparatively analyzed spectral responses under different discharge conditions and the time-resolved spectral characteristics of the entire process. Experimental results indicate that the discharge can enhance the spectral signal intensities significantly. At 7 kV, the intensities of the three spectral lines (Cu II 521 nm, Cu I 578 nm, and Cu I 793 nm) are enhanced by factors of 22, 31, and 36, respectively, compared to those without discharge. Different spectral lines exhibit distinct responses to the applied voltage. Time-resolved spectral analysis indicates that the discharge-enhanced signal primarily originates from the prolonged plasma fluorescence lifetime. This study provides a reference for the development of highly sensitive and stable plasma spectroscopic analysis techniques. This method plays a positive role in advancing the application of laser-induced plasma spectroscopy in related fields such as materials analysis and trace detection.

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朱志峰, 李晓峰, 武腾飞, 高强, 李博.高压放电增强飞秒激光诱导等离子体光谱研究[J].计测技术,2026,46(3):8~14:
10.11823/j. issn.1674-5795.2026.03.02.

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  • 在线发布日期: 2026-07-02
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