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Picosecond laser krypton plasma emission in water window spectral range

机译:水窗谱系谱谱谱谱谱谱谱谱谱谱系

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摘要

Laser plasma created in a krypton gas puff target is studied as a source of radiation in the water window spectral range (lambda = 2.3-4.4 nm). The spatial development of the plasma induced by a sub-nanosecond Nd:YAG laser pulse focused on the gas puff target is modeled using 2d RMHD code Z*. It is shown that the created plasma is quickly heated and the critical electron density is achieved at the very beginning of the laser pulse. Space-time distributions of plasma quantities, namely, electron temperature, electron density, mass density, and plasma expansion velocity were evaluated. Furthermore, the temporal dependences of plasma electron temperature and electron density in a selected point were introduced into the kinetic code FLYCHK. Instantaneous spectra during the laser pulse and during plasma decay period are calculated showing the intense spectral lines in the water window range at the laser peak and delayed up to 0.8 ns. Temporal evolutions of the krypton ions relative populations prove that ions from Kr21+ and Kr22+ are responsible for the dominant spectral intensity emitted at a wavelength around lambda = 3 nm. Evaluated time resolved spectra are compared with the time integrated spectra obtained experimentally. The spatial distribution of the measured plasma luminosity is compared with the estimated area of plasma emission based on the evaluated distributions of plasma electron density and temperature. Published by AIP Publishing.
机译:在氪气粉扑目标创建激光等离子体研究作为辐射的在水中窗口光谱范围内的源(波长= 2.3-4.4纳米)。通过一个亚纳秒的Nd引起的等离子体的空间发展:YAG激光脉冲聚焦在喷气目标使用2D RMHD代码Z为建模*。结果表明,所产生的等离子体被迅速加热和临界电子密度在一开始激光脉冲来实现的。等离子体数量时,即,电子温度,电子密度,质量密度和等离子体膨胀速度的空间 - 时间分布进行评价。此外,等离子体的电子温度和电子密度在所选择的点的时间依赖性引入动力学代码FLYCHK。激光脉冲过程中和在等离子体衰变期间瞬时谱计算示出了在激光峰在水中窗口范围激烈谱线和最多延迟0.8纳秒。氪离子相对总体的时间的演化证明从Kr21 +和Kr22 +离子是负责在左右的λ= 3nm的波长发射的主导光谱强度。评价时间分辨光谱与实验获得的时间积分光谱进行比较。测得的光度等离子体的空间分布与基于等离子体电子密度和温度的分布进行评价等离子体发射的所估计的区域进行比较。通过AIP发布发布。

著录项

  • 来源
    《Physics of plasmas》 |2017年第12期|共8页
  • 作者单位

    Czech Acad Sci Inst Plasma Phys Prague 18200 8 Czech Republic;

    Czech Tech Univ Fac Biomed Engn Kladno 27201 Czech Republic;

    Laser Lab Gottingen eV Hans Adolf Krebs Weg 1 D-37077 Gottingen Germany;

    Laser Lab Gottingen eV Hans Adolf Krebs Weg 1 D-37077 Gottingen Germany;

    Czech Tech Univ Fac Biomed Engn Kladno 27201 Czech Republic;

    Czech Tech Univ Fac Biomed Engn Kladno 27201 Czech Republic;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 等离子体物理学;
  • 关键词

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