Volume 3 Issue 2
Mar.  2023
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Mengyun Hu, Shupeng Xu, Shuai Yuan and Heping Zeng. 2023: Breakdown Spectroscopy Induced by Nonlinear Interactions of Femtosecond Laser Filaments and Multidimensional Plasma Gratings. Ultrafast Science, 2023(2). doi: 10.34133/ultrafastscience.0013
Citation: Mengyun Hu, Shupeng Xu, Shuai Yuan and Heping Zeng. 2023: Breakdown Spectroscopy Induced by Nonlinear Interactions of Femtosecond Laser Filaments and Multidimensional Plasma Gratings. Ultrafast Science, 2023(2). doi: 10.34133/ultrafastscience.0013

Breakdown Spectroscopy Induced by Nonlinear Interactions of Femtosecond Laser Filaments and Multidimensional Plasma Gratings

doi: 10.34133/ultrafastscience.0013
Funds:

This work was sponsored by Shanghai Rising-Star Program (22QC1401000), National Defense Administration of Science, Technology and Industry (HTKJ2021KL504014), National Key Research and Development Program (2018YFB0504400),National Natural Science Foundation of China (11621404, 11727812,and 62035005), and Shanghai Municipal Science and Technology Major Project (2019SHZDZX01-ZX05).

  • Received Date: 2022-09-14
  • Rev Recd Date: 2022-12-21
  • Publish Date: 2023-01-30
  • Breakdown spectroscopy is a valuable tool for determining elements in solids, liquids,and gases. All materials in the breakdown region can be ionized and dissociated into highly excited fragments and emit characteristic fluorescence spectra. In this sense, the elemental composition of materials can be evaluated by detecting the fluorescence spectrum. This paper reviews the recent developments in laser-induced breakdown spectroscopy. The traditional laser-induced breakdown spectroscopy,filament-induced breakdown spectroscopy, plasma grating, and multidimensional plasma grating-induced breakdown spectroscopy are introduced. There are also some proposals for applications of plasma gratings, such as laser ablation, laser deposition, and laser catalysis of chemical reactions in conjunction with research on the properties of plasma gratings

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