Habibpour Mahdi, Parvin Parviz, Amrollahi Reza
Appl Opt. 2021 Feb 10;60(5):1099-1109. doi: 10.1364/AO.416032.
Here, a homemade gold fineness analyzer is fabricated based on calibration-free spark assisted laser-induced breakdown spectroscopy (CF SA-LIBS). The experimental arrangement consists of a -switched Nd:YAG laser combined with a spark generator and a single-channel CCD spectrometer. The well-arranged optical system, coupled with an electrical setup, allows us to successfully run SA-LIBS even at low energy single shots. The electric discharge contributes LIBS to reheat and promote more energetic plasma. Subsequently, plasma temperature elevates up to ∼20, and its lifetime is elongated as much as 6 times. As a consequence, the relative signal intensity is enhanced up to 1 order of magnitude against that of LIBS at the same pulsed energy. Furthermore, the electron density is also measured based on the broadened spectral width of the intensified line. The latter is used to obtain the ionic species concentrations more accurately according to the Saha-Eggert equation. As a result, we have assessed the gold karat with an analytical error less than 0.5% using CF SA-LIBS. In addition, the surface patterns recorded by the stylus profilometer reveal that the single-shot SA-LIBS benefits a smaller ablative mass against standard LIBS.
在此,基于免校准火花辅助激光诱导击穿光谱法(CF SA-LIBS)制作了一台自制的黄金纯度分析仪。实验装置由一台调Q Nd:YAG激光器、一个火花发生器和一台单通道电荷耦合器件(CCD)光谱仪组成。精心布置的光学系统与电气装置相结合,使我们即使在低能量单次激发情况下也能成功运行SA-LIBS。放电有助于LIBS重新加热并产生更具能量的等离子体。随后,等离子体温度升高至约20,其寿命延长至6倍之多。因此,在相同脉冲能量下,相对信号强度相对于LIBS增强了1个数量级。此外,还基于增强谱线的展宽光谱宽度测量了电子密度。后者用于根据萨哈-埃格特方程更准确地获取离子种类浓度。结果,我们使用CF SA-LIBS评估黄金纯度时分析误差小于0.5%。此外,触针轮廓仪记录的表面图案显示,单次激发SA-LIBS相对于标准LIBS产生的烧蚀质量更小。