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Resonance-enhanced laser-induced plasma spectroscopy:ambient gas effects

机译:共振增强激光诱导等离子体光谱:环境气体效应

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when performing laser-induced plasma spectroscopy for elemental analysis,the sensitivity could be significantly enhanced if the plume was resonantly rekindled by a dye laser pulse.The extent of the enhancement was found to depned on the ambient gas.Air,nitrogen,helium,argon and xenon at pressures ranging from vacuum to 1 bar were investigarted.In vacuum,the analyte signal was boosted because of reduced cooling,but it soon decayed as the plume freely expanded.By choosing the right ambient gas at the right pressure,the expanding plume could be confined as well as thermally insulated to maximize the analyte signal.For instance,an ambinet of 13 mbar xenon yielded a singal-to-noise ratio of 110.That ratio was 53 when the pellet was ablated in air,and decreased further to 5 if the dye laser was tuned off resonance.
机译:在进行激光诱导等离子体光谱进行元素分析时,如果通过染料激光脉冲使烟羽共振地重新点燃,则灵敏度可以显着提高。发现增强的程度取决于周围的气体。空气,氮气,氦气,氩气在真空至1 bar的压力下对氙和氙进行了研究。在真空中,由于冷却降低,分析物信号增强了,但随着羽流自由膨胀,该信号很快衰减。通过在合适的压力下选择合适的环境气体,膨胀的羽流可以密闭和隔热,以最大化分析物信号。例如,13 mbar氙气的阿比内特产生的信噪比为110。当在空气中烧蚀沉淀时,该比值为53,然后进一步降低至如果染料激光器被调离共振,则为5。

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