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首页> 外文期刊>American Journal of Condensed Matter Physics >Mass Quadrupole Spectrometry for Infrared Laser-Generated Plasmas Detection
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Mass Quadrupole Spectrometry for Infrared Laser-Generated Plasmas Detection

机译:质谱四极杆质谱用于红外激光产生的等离子体检测

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A nanosecond pulsed Nd:YAG laser, operating at the fundamental wavelength of 1064 nm and at an intensity of about 1010 W/cm2, was employed to irradiate the Cu0.4W0.6 metallic alloy and the relative pure components (Cu and W) in vacuum to investigate about the ablation. Produced plasmas were characterized in terms of thermal and Coulomb interactions evaluating the equivalent temperatures and acceleration voltages developed in the non-equilibrium plasma core. The particles emission, produced along the normal to the target surface, was investigated by measuring, with the special electrostatic mass quadrupole spectrometer Hiden EQP 300, neutral and ion energy distributions and fitting experimental data with the “Coulomb-Boltzmann-shifted” function. Results indicated that the metal alloy stoichiometry, in a first approximation, is well transported to the ion and neutral stoichiometry of the plasma.
机译:使用纳秒脉冲Nd:YAG激光,以1064 nm的基本波长和大约1010 W / cm2的强度工作,以辐照Cu0.4W0.6金属合金及其中的相对纯组分(Cu和W)。真空以研究消融。根据热和库仑相互作用来表征产生的等离子体,从而评估在非平衡等离子体核心中产生的等效温度和加速电压。通过使用特殊的静电质量四极质谱仪Hiden EQP 300测量中性和离子能分布,并通过“库仑-玻耳兹曼位移”功能拟合实验数据,研究了沿目标表面法线产生的粒子发射。结果表明,金属合金的化学计量在第一近似中很好地传输到等离子体的离子和中性化学计量。

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