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Time resolved long-wave infrared laser-induced breakdown spectroscopy of inorganic energetic materials by a rapid mercury-cadmium-telluride linear array detection system

机译:快速汞-镉-碲化物线性阵列检测系统对无机高能材料的时间分辨长波红外激光诱导的击穿光谱

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摘要

A mercury-cadmium-telluride linear array detection system that is capable of rapidly capturing (similar to 1-5 s) a broad spectrum of atomic and molecular laser-induced breakdown spectroscopy (LIBS) emissions in the long-wave infrared region (LWIR, similar to 5.6-10 mu m) was recently developed. Similar to the conventional ultraviolet-visible LIBS, a broadband emission spectrum of condensed phase samples covering a 5.6-10 mu m spectral region could be acquired from just a single laser-induced micro-plasma. Intense and distinct atomic and molecular LWIR emission signatures of various solid inorganic energetic materials were readily observed and identified. Time resolved emissions of inorganic energetic materials were studied to assess the lifetimes of LWIR atomic and molecular emissions. The LWIR atomic emissions generally decayed fast on the scale of tens of microseconds, while the molecular signature emissions from target molecules excited by the laser-induced plasma appeared to be very long lived (similar to millisecond). The time dependence of emission intensities and peak wavelengths of these signature emissions gave an insight into the origin and the environment of the emitting target species. Moreover, observed lifetimes of these LWIR emissions can be utilized for further optimization of the signal quality and detection limits of this technique. (C) 2016 Optical Society of America
机译:一种汞-碲化镉线性阵列检测系统,能够在长波红外区域(LWIR)中快速捕获(类似于1-5 s)宽范围的原子和分子激光诱导击穿光谱(LIBS)发射光谱,最近开发了类似于5.6-10微米)。与传统的紫外可见LIBS相似,仅从单个激光诱导的微等离子体即可获得覆盖5.6-10μm光谱区域的凝聚相样品的宽带发射光谱。各种固体无机高能材料的强烈而独特的原子和分子LWIR发射特征易于观察和鉴定。研究了无机高能材料的时间分辨发射,以评估LWIR原子和分子发射的寿命。 LWIR原子发射通常会在几十微秒的范围内快速衰减,而激光诱导的等离子体激发的目标分子的分子特征发射似乎寿命很长(类似于毫秒)。这些特征性发射的发射强度和峰值波长的时间依赖性使我们可以洞悉发射目标物种的起源和环境。此外,观察到的这些LWIR发射的寿命可用于进一步优化该技术的信号质量和检测极限。 (C)2016美国眼镜学会

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