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Characteristics of the aluminum alloy plasma produced by a 1064 nm Nd:YAG laser with different irradiances

机译:不同辐照度的1064 nm Nd:YAG激光产生的铝合金等离子体的特性

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The plasma generated by 1064 nm Nd:YAG laser irradiation of aluminum alloy in air at atmospheric pressure was studied spectroscopically. The electron density inferred by measuring the Stark-broadened line profile of Si(I) 288.16 nm decreases with increasing distance from the target surface. The electron temperature was determined using the Boltzmann plot method with nine strong neutral aluminum lines. Due to the thermal conduction towards the solid target and radiative cooling of the plasma as well as conversion of thermal energy into kinetic energy, the electron temperature decreases both at the plasma edge and close to the target surface. Electron density and electron temperature were also studied as functions of laser power density. At the same time, the validity of the assumption of local thermodynamic equilibrium and the effect of self-absorption were discussed in light of the results obtained.
机译:用光谱法研究了1064 nm Nd:YAG激光在大气中空气中辐照铝合金产生的等离子体。通过测量Si(I)288.16 nm的Stark展宽线轮廓推断出的电子密度随距目标表面距离的增加而降低。使用9条强中性铝线,使用Boltzmann绘图法确定电子温度。由于朝着固体靶的热传导和等离子体的辐射冷却以及将热能转换为动能,电子温度在等离子体边缘和靠近靶表面的位置都降低了。还研究了电子密度和电子温度与激光功率密度的关系。同时,根据获得的结果讨论了局部热力学平衡假设的有效性和自吸收的影响。

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