Muhammed Shameem K M, Dhanada V S, Unnikrishnan V K, George Sajan D, Kartha V B, Santhosh C
Centre for Biophotonics, Department of Atomic and Molecular Physics, Manipal Academy of Higher Education, Manipal 576 104, India.
Centre for Applied Nanosciences, Department of Atomic and Molecular Physics, Manipal Academy of Higher Education, Manipal 576 104, India.
Rev Sci Instrum. 2018 Jul;89(7):073108. doi: 10.1063/1.5024966.
We have developed and standardized a novel hybrid laser-induced breakdown spectroscopy (LIBS)-Raman system using a single pulsed laser and a high-resolution intensified charge coupled device coupled echelle spectrograph. LIBS and Raman spectroscopy are highly complementary techniques which yield elemental and molecular information. Both techniques share an apparently similar instrumental configuration but need entirely different requirements like spectral range covered, resolution, and light-gathering efficiencies. There are thus many challenges to be faced in developing a combined system. In the present work, we show that an echelle spectrograph combined with a compact Q-switched Nd:YAG laser operating at 532 nm as an excitation source in a portable configuration can be efficiently used for such multi-purpose spectroscopy. Atomic and molecular emissions from the sample surface have been recorded in a gated mode using this setup. Compared to conventional spectrographs, echelle provides simultaneous broad bandpass (250-900 nm) and better spectral resolution at an extremely small fixed slit width of 10 × 50 μm without moving the dispersive elements. The echelle-based hyphenated system provides fast and reliable analysis of materials with combined atomic and molecular spectra of the same spot with better reliability. In this paper, we discuss the optimization of various instrumental parameters and optical components of this hyphenated system using a medium Raman cross section sample, CaCO. The feasibility of single shot LIBS-Raman measurement capabilities of echelle has also been demonstrated using the developed system.
我们开发并标准化了一种新型的混合激光诱导击穿光谱(LIBS)-拉曼系统,该系统使用单脉冲激光和高分辨率增强型电荷耦合器件耦合阶梯光栅光谱仪。LIBS和拉曼光谱是高度互补的技术,可提供元素和分子信息。这两种技术的仪器配置看似相似,但在覆盖的光谱范围、分辨率和集光效率等方面需要完全不同的要求。因此,开发组合系统面临许多挑战。在本工作中,我们表明,在便携式配置中,将阶梯光栅光谱仪与工作在532 nm的紧凑型调Q Nd:YAG激光作为激发源相结合,可有效地用于这种多用途光谱分析。使用该装置,已在选通模式下记录了样品表面的原子和分子发射。与传统光谱仪相比,阶梯光栅在10×50μm的极小固定狭缝宽度下,无需移动色散元件,即可同时提供宽带通(250-900 nm)和更好的光谱分辨率。基于阶梯光栅的联用系统能够对同一点的原子和分子光谱进行快速可靠的分析,具有更高的可靠性。在本文中,我们使用中拉曼截面样品CaCO讨论了该联用系统各种仪器参数和光学组件的优化。利用所开发的系统,还证明了阶梯光栅单次LIBS-拉曼测量能力的可行性。