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Emission spectroscopy of expanding laser-induced gaseous hydrogen-nitrogen plasma

机译:扩增激光诱导的气态氢氮等离子体的发射光谱

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摘要

Microplasma is generated in an ultra-high-pure H-2 and N-2 gas mixture with a Nd:YAG laser device that is operated at the fundamental wavelength of 1064 nm. The gas mixture ratio of H-2 and N-2 is 9 to 1 at a pressure of 1.21 +/- 0.03 10(5) Pa inside a chamber. A Czerny-Turner-type spectrometer and an intensified charge-coupled device are utilized for the recording of plasma emission spectra. The line-of-sight measurements are Abel inverted to determine the radial distributions of electron number density and temperature. Recently derived empirical formulas are utilized for the extraction of values for electron density. The Boltzmann plot and line-to-continuum methods are implemented for the diagnostic of electron excitation temperature. The expansion speed of the plasma kernel maximum electron temperature amounts to 1 km/s at a time delay of 300 ns. The microplasma, initiated by focusing 14 ns, 140 mJ pulses, can be described by an isentropic expansion model. (C) 2017 Optical Society of America
机译:在超高纯H-2和N-2气体混合物中产生微血浆,其具有Nd:YAG激光器件,其在1064nm的基本波长下操作。 H-2和N-2的气体混合比在室内1.21 +/- 0.03 10(5)PA的压力下为9至1。胫骨型转盘型光谱仪和强化电荷耦合器件用于记录等离子体发射光谱。视线测量值是Abel反转以确定电子数密度和温度的径向分布。最近衍生的经验配方用于提取电子密度的值。为诊断电子励磁温度实施了Boltzmann图和线 - 连续方法。等离子体核的膨胀速度在300ns的时间延迟时最大电子温度最大电温度为1km / s。通过聚焦14ns,140mJ脉冲引发的显微载体可以通过等熵膨胀模型来描述。 (c)2017年光学学会

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  • 来源
    《Applied optics》 |2017年第33期|共8页
  • 作者单位

    Univ Tennessee Space Inst Ctr Laser Applicat 411 BH Goethert Pkwy Tullahoma TN 37388 USA;

    Univ Tennessee Space Inst Ctr Laser Applicat 411 BH Goethert Pkwy Tullahoma TN 37388 USA;

    Univ Tennessee Space Inst Ctr Laser Applicat 411 BH Goethert Pkwy Tullahoma TN 37388 USA;

    Univ Tennessee Space Inst Ctr Laser Applicat 411 BH Goethert Pkwy Tullahoma TN 37388 USA;

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