Opt Express. 2023 Feb 13;31(4):6464-6474. doi: 10.1364/OE.481577.
An optimized remote material detection scheme based on the laser filament-induced plasma spectroscopy and light detection and ranging (FIPS-LIDAR) is proposed in this work. The elemental composition and concentration of aerosol are measured by FIPS-LIDAR. By focusing the femtosecond laser with a large aperture (Φ41 cm) concave mirror and coaxial fluorescence collection scheme, the remote detection of aerosol in air at μg/m level has been realized at a distance of 30 m. The limit of detection for Na in aerosol droplets is 8 ppm (3 μg/m in air), which is the lowest detection limit that has been reported using millijoule femtosecond laser pulse (4.4 mJ). Furthermore, using spectral preprocessing and optimization of the proposed significance of peak (SOP) algorithm, feature peak signals are extracted from weak signals and the limit of detection can be further decreased to 1.4 μg/m.
本工作提出了一种基于激光细丝诱导等离子体光谱学和光探测和测距(FIPS-LIDAR)的优化远程物质检测方案。FIPS-LIDAR 测量气溶胶的元素组成和浓度。通过使用大孔径(Φ41cm)凹面镜聚焦飞秒激光并采用同轴荧光收集方案,在 30m 的距离处实现了空气中μg/m 量级的气溶胶的远程检测。气溶胶液滴中 Na 的检测限为 8ppm(空气中 3μg/m),这是使用毫焦飞秒激光脉冲(4.4mJ)报告的最低检测限。此外,通过对提出的特征峰意义(SOP)算法进行光谱预处理和优化,可以从弱信号中提取特征峰信号,从而将检测限进一步降低到 1.4μg/m。