Published 2011 | Version v1
Journal article

Time-Resolved Spectroscopy Diagnostic of Laser-Induced Optical Breakdown

  • 1. Center for Laser Applications, The University of Tennessee Space Institute, 411 B.H. Goethert Parkway, Tullahoma, TN 37388 (United States)
  • 2. Chemical Research Center of the Hungarian Academy of Sciences, Pusztaszeri ut 59-67, 1025 Budapest (Hungary)

Description

Transient laser plasma is generated in laser-induced optical breakdown (LIOB). Here we report experiments conducted with 10.6-micron CO2 laser radiation, and with 1.064-micron fundamental, 0.532-micron frequency-doubled, 0.355-micron frequency-tripled Nd:YAG laser radiation. Characterization of laser induced plasma utilizes laser-induced breakdown spectroscopy (LIBS) techniques. Atomic hydrogen Balmer series emissions show electron number density of 1017 cm-3 measured approximately 10μs and 1μs after optical breakdown for CO2 and Nd:YAG laser radiation, respectively. Recorded molecular recombination emission spectra of CN and C2 Swan bands indicate an equilibrium temperature in excess of 7000 Kelvin, inferred for these diatomic molecules. Reported are also graphite ablation experiments where we use unfocused laser radiation that is favorable for observation of neutral C3 emission due to reduced C3 cation formation. Our analysis is based on computation of diatomic molecular spectra that includes accurate determination of rotational line strengths, or Honl-London factors

Additional details

Publishing Information

Journal Title
International Journal of Spectroscopy (Online)
Journal Volume
2011
Journal Page Range
p. 7
ISSN
1687-9457