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Influence of the mechanical coupling to aluminum target by NdrYAG pulsed laser with CW laser

机译:连续激光NdrYAG脉冲激光对铝靶机械耦合的影响。

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To research the influence of initial temperature on the laser ablation impulse coupling coefficient, we have established an experimental setup that can response micro impulse of µNs level. The setup mainly contains the impact pendulum with tiny-damp and the micro-angle detector based on laser diffuse reflection. The different initial temperatures were realized by continuum laser irradiation with different intensities and time duration. Experiments were carried out to show the effect of initial temperature on the impulse coupling coefficient by NdrYAG laser pulses. The results show that the impulse coupling coefficients rapidly increased with the increases of the laser intensity. When incident laser intensity is about 5.2J/cm~2, the coefficient increased to the maximum. Then the impulse coupling coefficients decreased gradually. Theoretical analysis and the experimental results show that the impulse coefficient increase at the first phase result from increase energy of plasma, while the coefficient decrease at the second phase derived mainly from the target softening under high temperature.
机译:为了研究初始温度对激光烧蚀脉冲耦合系数的影响,我们建立了能够响应微纳秒级微脉冲的实验装置。该装置主要包括具有微小阻尼的冲击摆和基于激光漫反射的微角度检测器。通过用不同强度和持续时间的连续激光照射实现了不同的初始温度。实验表明,NdrYAG激光脉冲对初始温度对脉冲耦合系数的影响。结果表明,脉冲耦合系数随着激光强度的增加而迅速增加。当入射激光强度约为5.2J / cm〜2时,系数增加到最大。然后,脉冲耦合系数逐渐减小。理论分析和实验结果表明,第一阶段的脉冲系数增加是由于等离子体能量的增加,而第二阶段的脉冲系数减少的主要原因是高温下的目标软化。

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