Numerical investigation of discharge evolution and breakdown characteristics of ArF excimer lasers

Xiaochi Ma, Luying Bai, Yifei Zhu, Xinxian Jiang, Yun Wu
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Abstract

The corona bar induced pre-ionization is a crucial preliminary process in the operation of ArF excimer lasers, directly impacting the uniformity and stability of output laser. However, the ultraviolet corona pre-ionization, as the mainstream method, is tightly coupled with the main discharge process, which complicates analysis. Here, we establish a numerical model of a single pulse discharge incorporating an external circuit to analyze the pre-ionization process and its influence on the breakdown characteristics. (1) By adopting detailed input parameters of photoionization model, we observe uniform and dispersed plasma propagation from the corona bar to the main gap. (2) An artificial boundary condition is proposed to investigate the phenomenological effect of high-energy electrons emission, emphasizing the influence of surface discharge along the cathode. (3) The differences between the two pre-ionization setup methods, photoionization and background electron density, are compared numerically. This study enhances the understanding of the pre-ionization process in ArF excimer lasers and provides theoretical insights for their optimization and design.
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ArF 准分子激光器放电演变和击穿特性的数值研究
电晕条诱导的预电离是氩氦准分子激光器运行过程中的一个重要前处理过程,直接影响输出激光的均匀性和稳定性。然而,作为主流方法的紫外电晕预电离与主放电过程紧密耦合,这使得分析变得复杂。在此,我们建立了一个包含外部电路的单脉冲放电数值模型,以分析预电离过程及其对击穿特性的影响。(1) 通过采用光离子化模型的详细输入参数,我们观察到等离子体从电晕棒向主间隙均匀而分散地传播。(2) 提出了一个人工边界条件来研究高能电子发射的现象学效应,强调了沿阴极表面放电的影响。(3) 数值比较了光离子化和背景电子密度两种预电离设置方法之间的差异。这项研究加深了人们对 ArF 准分子激光器预电离过程的理解,并为其优化和设计提供了理论依据。
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