O'Neil Morgan, Demko Andrew, Petersen Eric L, Kulatilaka Waruna D
Appl Opt. 2019 Apr 1;58(10):C79-C83. doi: 10.1364/AO.58.000C79.
Ultrashort-pulse laser-induced breakdown spectroscopy (LIBS), specifically using a femtosecond laser, has certain advantages over longer-pulse, nanosecond-duration lasers, in that they typically have kilohertz repetition rates and reduced background noise along with little-to-no laser-plasma interaction, all of which lead to a better chance of detecting LIBS signals from trace particles. In this work, femtosecond-LIBS is investigated for the detection of metallic particles in the hot flame zone of solid propellant strands burning in the atmosphere. The metallic particles doped into the solid propellants were aluminum (Al), copper, lead, lead stearate, and mercury chloride, which are all either typically found in energetic formulations as additives or impurities. Using an 80-fs-pulse-duration, amplified Ti:Sapphire laser operating at 1000 Hz, single-shot concentration measurement experiments were performed. The femtosecond-LIBS apparatus could detect all metallic additives, whereas a previous nanosecond-LIBS scheme with comparable conditions was able to detect only higher concentrations of Al. The single-shot concentration study, conducted with the Al-doped propellants, indicated that there is a linear relationship between the percentage of laser shots detecting a LIBS signal and the mass percentage of Al initially present in the strands. The present results illustrate the advantages of using a femtosecond laser over a nanosecond laser for LIBS detection during energetics material reactions.
超短脉冲激光诱导击穿光谱技术(LIBS),特别是使用飞秒激光时,相较于长脉冲、纳秒级持续时间的激光具有某些优势,因为它们通常具有千赫兹的重复频率,背景噪声降低,并且激光与等离子体的相互作用极小甚至没有,所有这些都使得从痕量颗粒中检测LIBS信号的机会更大。在这项工作中,研究了飞秒LIBS用于检测在大气中燃烧的固体推进剂药柱热火焰区中的金属颗粒。掺杂到固体推进剂中的金属颗粒有铝(Al)、铜、铅、硬脂酸铅和氯化汞,这些在含能配方中通常都是作为添加剂或杂质存在的。使用脉宽为80飞秒、重复频率为1000 Hz的放大钛宝石激光进行了单次浓度测量实验。飞秒LIBS装置能够检测所有金属添加剂,而之前在类似条件下的纳秒LIBS方案只能检测到较高浓度的Al。对掺Al推进剂进行的单次浓度研究表明,检测到LIBS信号的激光脉冲百分比与药柱中初始存在的Al的质量百分比之间存在线性关系。目前的结果说明了在含能材料反应过程中,使用飞秒激光进行LIBS检测相对于纳秒激光的优势。