4.6 Article

Investigation on self-absorption at reduced air pressure in quantitative analysis using laser-induced breakdown spectroscopy

Journal

OPTICS EXPRESS
Volume 24, Issue 23, Pages 26521-26528

Publisher

OPTICAL SOC AMER
DOI: 10.1364/OE.24.026521

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Funding

  1. Major Scientific Instruments and Equipment Development Special Funds of China [2011YQ160017]
  2. National Natural Science Foundation of China [61378031, 51429501, 61575073]

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The self-absorption at reduced air pressure for quantitative analysis of Mn and Cu elements in steel using laser-induced breakdown spectroscopy was investigated. The calibration curves of Mn and Cu elements at the air pressures of 100, 80, 50, 20, and 1 kPa were studied. The results show that, the nonlinearity of calibration curves which caused by self-absorption effects at atmosphere could be significantly improved by reducing the air pressure to 1 kPa, and the coefficients of determination (R-2) of linear calibration curves of Mn and Cu lines are all higher than 0.99. The further study explored that the reason for the improvement was that the induced plasma became low density and the self-absorption coefficient was close to 1 when the air pressure reduced to 1 kPa. 2016 Optical Society of America

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