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Intensity enhancement in Double-Pulse Laser-Induced Breakdown Spectroscopy in vacuum

机译:真空中双脉冲激光诱导击穿光谱的强度增强

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Single- and double-pulse laser-induced breakdown spectroscopy (LIBS) were carried out on carbon samples at low background pressures (10~(-3) Torr). Double-pulse experiments were performed with an orthogonal beam geometry on two targets. Conditions for intensity enhancement were analyzed as a function of delay between pulses and laser fluences. The optimal delay between pulses was found in the range from 2 to 5 μs. Compared to single-pulse LIBS, signal enhancements of approximately 2 for the C I 477.2 nm, 4 for the C II 426.7 run and 6 for the C_2 473.4 nm (Swan band head) lines were observed in double-pulse. For all species under consideration, intensification increased with the fluence of the first pulse. On the other hand, the fluence of the second pulse had different effects on atomic and molecular species.
机译:在低背景压力(10〜(-3)Torr)下对碳样品进行单脉冲和双脉冲激光诱导击穿光谱(LIBS)。在两个目标上使用正交束几何进行双脉冲实验。分析了强度增强的条件,作为脉冲和激光通量之间延迟的函数。发现脉冲之间的最佳延迟范围为2至5μs。与单脉冲LIBS相比,在双脉冲中观察到的信号强度在C I 477.2 nm处约为2倍,在C II 426.7行程内约为4倍,在C_2 473.4 nm(Swan band head)管路上约为6倍。对于所有考虑中的物种,强度随着第一个脉冲的通量而增加。另一方面,第二脉冲的能量密度对原子和分子种类具有不同的影响。

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