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- W1565787812 abstract "When a nanosecond laser pulse with sufficiently high laser energy is focused into a solidstate surface, pulsed laser ablation of the material and subsequently laser induced plasma formation occurs. An emitting light from a plasma is a rich source of information and its optical emission is something like “fingerprints” of emitting atomic, ionic and molecular species, composed in the irradiated sample. This emission can be used for the basic spectrochemical analysis of the studied material’s composition. Laser induced plasma spectroscopy is an emerging technique for fast and accurate compositional analysis of many different materials (Viskup, 2010), and is nowadays, very often used in diverse applications. However, the issue of sensitivity and detection limits are still open question. A main goal of this chapter is to shown the possibility to enhance an optical emission from plasma and improve a limit of detection of trace elements detected by optical emission from a measured sample. For this purpose, the advantage of double laser pulse irradiation is very convenient for plasma re-heating or re-excitation (Viskup et al., 2010)." @default.
- W1565787812 created "2016-06-24" @default.
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- W1565787812 date "2012-03-09" @default.
- W1565787812 modified "2023-10-03" @default.
- W1565787812 title "Single and Double Laser Pulse Interaction with Solid State – Application to Plasma Spectroscopy" @default.
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- W1565787812 doi "https://doi.org/10.5772/35288" @default.
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