Abstract
Collinear long and short dual-pulse laser-induced breakdown spectroscopy (DP-LIBS) was employed to clarify the emission characteristics from laser-induced plasma. The plasma was sustained and became stable by the long pulse-width laser with the pulse width of 60 μs under free running (FR) conditions as an external energy source. Comparing the measurement results of stainless steel in air using single-pulse LIBS (SP-LIBS) and DP-LIBS, the emission intensity was markedly enhanced using DP-LIBS. The temperature of plasma induced by DP-LIBS was maintained at a higher temperature under different gate delay time and short pulse-width laser power conditions compared with those measured using short SP-LIBS. Moreover, the variation rates of plasma temperatures measured using DP-LIBS were also lower. The superior detection ability was verified by the measurement of aluminum sample in water. The spectra were clearly detected using DP-LIBS, whereas it cannot be identified using SP-LIBS of short and long pulse widths. The effects of gate delay time and short pulse-width laser power were also discussed. These results demonstrate the feasibility and enhanced detection ability of the proposed collinear long and short DP-LIBS method.
| Original language | English |
|---|---|
| Pages (from-to) | 2187-2198 |
| Number of pages | 12 |
| Journal | Applied Spectroscopy |
| Volume | 71 |
| Issue number | 9 |
| DOIs | |
| State | Published - 1 Sep 2017 |
Keywords
- DP-LIBS
- Long pulse
- dual-pulse laser-induced breakdown spectroscopy
- enhancement
- plasma temperature stabilization
- underwater measurement
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