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用于在气体中的单脉冲激光诱导击穿光谱中控制等离子体位置、提高空间分辨率并增强发射的光束交叉配置。

Beam-crossing configuration to control plasma position, improve spatial resolution, and enhance emissions in single-pulse, laser-induced breakdown spectroscopy in gases.

作者信息

Sun Zhiwei, Alwahabi Zeyad

出版信息

Appl Opt. 2022 Jan 10;61(2):316-323. doi: 10.1364/AO.438766.

DOI:10.1364/AO.438766
PMID:35200864
Abstract

We report a relatively simple configuration of laser-induced breakdown spectroscopy (LIBS) that is suitable for gas flow diagnostics with increased spatial resolution, signal intensity, and stability. In this optical configuration, two laser beams are generated by splitting a single laser beam, and then they are focused and crossed orthogonally at the detection volume from two different optical paths. Different from dual-pulse LIBS, this LIBS configuration uses only one laser source, and thus is of relatively low cost. Several advantages were found for this simple beam-crossing LIBS when it was demonstrated in air in the present work, particularly on signal enhancement and stabilization, confining plasma volume, and controlling plasma position. Both of the latter two advantages are relevant to spatial resolution improvement of LIBS in gases, which has rarely been discussed in previous reports. An enhancement factor of 2 was found for atomic hydrogen, nitrogen, and oxygen emissions with respect to conventional LIBS. Another advantage is that the position of breakdown can be precisely controlled through adjustment of the propagation of the two beams, also resulting in smaller plasma volume and stable emission intensity. Furthermore, the technique is moderately tolerant to dust particles neutrally present in the environment, avoiding the spark occurring at a position out of the detection volume. Beyond LIBS, the new configuration has other potential applications, e.g., laser-induced ignition, which is also briefly discussed.

摘要

我们报道了一种相对简单的激光诱导击穿光谱法(LIBS)配置,该配置适用于具有更高空间分辨率、信号强度和稳定性的气流诊断。在这种光学配置中,通过将单束激光分光产生两束激光,然后它们从两条不同的光路聚焦并在检测体积处正交相交。与双脉冲LIBS不同,这种LIBS配置仅使用一个激光源,因此成本相对较低。在本工作中,当这种简单的光束交叉LIBS在空气中进行演示时,发现了几个优点,特别是在信号增强和稳定、限制等离子体体积以及控制等离子体位置方面。后两个优点都与提高LIBS在气体中的空间分辨率有关,这在以前的报告中很少被讨论。相对于传统LIBS,原子氢、氮和氧发射的增强因子为2。另一个优点是,通过调整两束光的传播,可以精确控制击穿位置,这也会导致等离子体体积更小且发射强度稳定。此外,该技术对环境中中性存在的尘埃颗粒具有一定的耐受性,避免在检测体积之外的位置产生火花。除了LIBS之外,这种新配置还有其他潜在应用,例如激光诱导点火,本文也将简要讨论。

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