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Photo-triggering and secondary electron produced ionization in electric discharge ArF* excimer lasers

机译:放电ArF *受激准分子激光器中的光触发和二次电子产生的电离

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摘要

Electric discharge excimer lasers are sustained in multi-atmosphere attaching gas mixtures that are typically preionized to enable a reproducible, uniform glow, which maximizes optical quality and gain. This preionization is often accomplished using UV light produced by a corona discharge within the plasma cavity. To quantify the relationship between corona discharge properties and those of the laser discharge, the triggering of electron avalanche by preionizing UV light in an electric dischargepumped ArF* excimer laser was numerically investigated using a two-dimensional model. The preionizing UV fluxes were generated by a corona-bar discharge driven by the same voltage pulse as the main discharge sustained in a multi-atmospheric Ne/Ar/Xe/F_2 gas mixture. The resulting peak photoelectron density in the inter-electrode spacing is around 10~8 cm~(-3), and its distribution is biased toward the UV source. The preionization density increases with increasing dielectric constant and capacitance of the corona bar. The symmetry and uniformity of the discharge are, however, improved significantly once the main avalanche develops. In addition to bulk electron impact ionization, the ionization generated by sheath accelerated secondary electrons was found to be important in sustaining the discharge current at experimentally observed values. At peak current, the magnitude of the ionization by sheath accelerated electrons is comparable to that from bulk electron impact in the vicinity of the cathode.
机译:放电受激准分子激光器维持在多气氛附着的气体混合物中,该混合物通常经过预离子化,以实现可再现的均匀发光,从而使光学质量和增益最大化。通常使用等离子体腔内电晕放电产生的紫外线来实现这种预电离。为了量化电晕放电特性与激光放电特性之间的关系,使用二维模型对通过放电泵浦的ArF *准分子激光器中的紫外线进行预电离来触发电子雪崩。预电离紫外线通量是由电晕棒放电产生的,该电晕棒放电是由与在多气氛Ne / Ar / Xe / F_2气体混合物中维持的主放电相同的电压脉冲驱动的。电极间间距的峰值光电子密度约为10〜8 cm〜(-3),其分布偏向紫外光源。预电离密度随着电晕棒的介电常数和电容的增加而增加。但是,一旦形成主要雪崩,放电的对称性和均匀性就会得到显着改善。除了体电子碰撞电离以外,还发现由鞘层加速的二次电子产生的电离对于将放电电流维持在实验观察值也很重要。在峰值电流下,鞘层加速电子的电离幅度可与阴极附近的体电子撞击产生的电离幅度相当。

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  • 来源
    《Journal of Applied Physics》 |2011年第8期|p.083304.1-083304.10|共10页
  • 作者单位

    Electrical Engineering and Computer Science Department, University of Michigan, 1301 Beal Avenue, Ann Arbor, Michigan 48109-2122, USA;

    Electrical Engineering and Computer Science Department, University of Michigan, 1301 Beal Avenue, Ann Arbor, Michigan 48109-2122, USA;

  • 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
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