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Ultrasound generated by a femtosecond and a picosecond laser pulse near the ablation threshold

机译:飞秒和皮秒激光脉冲在消融阈值附近产生的超声

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We have investigated high-frequency ultrasound generated by single laser pulses in thin (50 μm) aluminum foils as a function of the laser fluence. Laser-pulse durations of 80 fs and 270 ps were used to compare the ultrasound generated in two very different regimes: thermoelastic and ablation. The measured rear-surface displacement induced by the ultrasound pulse is similar after 50-μm propagation through the foils for the two laser-pulse durations in the fluence range of 0.1-0.7 J/cm~2. For fluences greater than the ablation threshold (0.25 and 0.63 J/cm~2 for the 80 -fs and 270-ps pulses, respectively), the ultrasound amplitude generated by the 270-ps laser pulse is increased significantly due to absorption of laser energy by the ablating plasma. This is not observed for the 80-fs laser pulse since ablation is produced well after the laser-pulse irradiation of the target. The measured surface displacement as a function of laser fluence is compared to the calculations of a one-dimensional fluid code for both laser-pulse durations. The model calculations agree in many ways with the experimental results, but some discrepancies are observed.
机译:我们已经研究了在薄(50μm)铝箔中由单个激光脉冲产生的高频超声与激光能量密度的关系。使用80 fs和270 ps的激光脉冲持续时间来比较在两种非常不同的状态下产生的超声:热弹性和消融。在两个激光脉冲持续时间内,在0.1-0.7 J / cm〜2的注量范围内,通过铝箔传播50-μm后,超声脉冲引起的后表面位移的测量结果相似。对于大于消融阈值的能量密度(对于80 fs和270 ps脉冲分别为0.25和0.63 J / cm〜2),由于吸收激光能量,由270 ps激光脉冲产生的超声振幅会显着增加通过消融血浆。对于80 fs的激光脉冲没有观察到这一点,因为在对目标进行激光脉冲照射后会很好地产生烧蚀。将针对激光通量测量的表面位移与两个激光脉冲持续时间的一维流体代码的计算结果进行比较。模型计算在许多方面与实验结果一致,但是观察到一些差异。

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