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High-intensity nanosecond-pulsed laser-induced plasma in air, water, and vacuum: A comparative study of the early-stage evolution using a physics-based predictive model

机译:空气,水和真空中的高强度纳秒脉冲激光诱导等离子体:使用基于物理学的预测模型对早期演化的比较研究

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摘要

A comparative study has been performed for properties (temperature, density, and electron Coulomb coupling constant) of plasma induced by high-intensity (~GW/cm~2) nanosecond laser-metal interactions in air, water, and vacuum. The study is for early-stage (t approx<30 ns) plasma evolution, where the above plasma properties are very difficult to measure experimentally and hence a comparative property study has been rarely reported in literature. In this paper a physics-based predictive model is used as the investigation tool. The model was verified based on experimental measurements for the early-stage plasma pressure and front propagation and the late-stage (t approx> 30 ns) plasma temperature and electron number density, which are relatively easy to measure. Therefore, the experimentally verified model can provide reasonably accurate information on the difficult-to-measure plasma temperature and density in the early-stage at least in the semiquantitative sense, and the information will be very useful for the fundamental laser plasma study and relevant laser applications. It has been found that plasma with very different temperatures and densities can be created in different media.
机译:对在空气,水和真空中高强度(〜GW / cm〜2)纳秒级激光-金属相互作用引起的等离子体的性质(温度,密度和电子库仑耦合常数)进行了比较研究。该研究针对早期(t约<30 ns)等离子体演化,其中上述等离子体特性很难通过实验测量,因此在文献中很少进行比较特性研究。在本文中,基于物理的预测模型被用作研究工具。该模型是根据实验测量值对早期等离子体压力和前沿传播以及后期(t约> 30 ns)等离子体温度和电子数密度进行了实验验证的,这些测量相对容易测量。因此,经过实验验证的模型至少在半定量的意义上可以为早期难以测量的等离子体温度和密度提供合理准确的信息,该信息对于基础激光等离子体研究和相关激光将非常有用。应用程序。已经发现,可以在不同的介质中产生具有非常不同的温度和密度的等离子体。

著录项

  • 来源
    《Applied Physicsletters》 |2008年第10期|10-12|共3页
  • 作者

    Benxin Wu;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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