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Measurement and Analysis of Atomic Hydrogen and Diatomic Molecular AlO C2 CN and TiO Spectra Following Laser-induced Optical Breakdown

机译:激光诱导的光学击穿后原子氢和双原子分子AlOC2CN和TiO光谱的测量和分析

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摘要

In this work, we present time-resolved measurements of atomic and diatomic spectra following laser-induced optical breakdown. A typical LIBS arrangement is used. Here we operate a Nd:YAG laser at a frequency of 10 Hz at the fundamental wavelength of 1,064 nm. The 14 nsec pulses with anenergy of 190 mJ/pulse are focused to a 50 µm spot size to generate a plasma from optical breakdown or laser ablation in air. The microplasma is imaged onto the entrance slit of a 0.6 m spectrometer, and spectra are recorded using an 1,800 grooves/mm grating an intensified linear diode array and optical multichannel analyzer (OMA) or an ICCD. Of interest are Stark-broadened atomic lines of the hydrogen Balmer series to infer electron density. We also elaborate on temperature measurements from diatomic emission spectra of aluminum monoxide (AlO), carbon (C2), cyanogen (CN), and titanium monoxide (TiO).The experimental procedures include wavelength and sensitivity calibrations. Analysis of the recorded molecular spectra is accomplished by the fitting of data with tabulated line strengths. Furthermore, Monte-Carlo type simulations are performed to estimate the error margins. Time-resolved measurements are essential for the transient plasma commonly encountered in LIBS.
机译:在这项工作中,我们介绍了激光诱导的光学击穿后原子和双原子光谱的时间分辨测量。使用典型的LIBS布置。在这里,我们以10 Hz的频率在1064 nm的基本波长下操作Nd:YAG激光器。能量为190 mJ /脉冲的14纳秒脉冲聚焦到50 µm的光斑大小,以通过光击穿或空气中的激光烧蚀产生等离子体。将微等离子体成像到0.6 m光谱仪的入口狭缝上,并使用1,800沟槽/ mm光栅,增强型线性二极管阵列和光学多通道分析仪(OMA)或ICCD记录光谱。令人感兴趣的是氢巴尔默系列的经斯塔克展宽的原子线,以推断电子密度。我们还根据一氧化铝(AlO),碳(C2),氰(CN)和一氧化钛(TiO)的双原子发射光谱对温度进行了详细的测量。实验步骤包括波长和灵敏度校准。记录的分子光谱的分析是通过将数据与列表线强度进行拟合来完成的。此外,执行蒙特卡洛类型仿真以估计误差容限。时间分辨测量对于LIBS中常见的瞬态等离子体至关重要。

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