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Gas-dynamic perturbations in an electric-discharge repetitively pulsed DF laser and the role of He in their suppression

机译:放电重复脉冲DF激光器中的气体动力学扰动以及He在抑制中的作用

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摘要

The gas-dynamic perturbations in a repetitively pulsed DF laser are studied using a Michelson interferometer. Based on the analysis of experimental data obtained in two experimental sets (working medium without buffer gas and with up to 90 % of He), it is concluded that such phenomena as isentropic expansion of a thermal plug, gas heating by shock waves and resonance acoustic waves do not considerably decrease the upper limit of the pulse repetition rate below a value determined by the time of the thermal plug flush out of the discharge gap. It is suggested that this decrease for a DF laser with the SF6-D-2 working mixture is caused by the development of overheat instability due to an increased energy deposition into the near-electrode regions and to the formation of electrode shock waves. Addition of He to the active media of the DF laser changes the discharge structure and improves its homogeneity over the discharge gape cross section, thus eliminating the reason for the development of this instability. A signification dilution of the active medium of a DF laser with helium up to the atmospheric pressure allowed us to achieve the limiting discharge initiation frequencies with the active medium replacement ratio K similar to 1.
机译:使用迈克尔逊干涉仪研究了重复脉冲DF激光器中的气体动力学扰动。根据在两个实验组(不含缓冲气体且He含量高达90%的工作介质)中获得的实验数据进行分析,得出的结论是,热塞的等熵膨胀,冲击波加热气体和共振声等现象波动不会将脉冲重复率的上限大大降低到低于由热塞冲出放电间隙的时间所确定的值。有人认为,使用SF6-D-2工作混合物的DF激光器的这种减少是由于过热不稳定性的发展所致,这是由于能量沉积到近电极区域的增加和电极冲击波的形成所致。在DF激光器的活性介质中添加He会改变放电结构,并改善其在放电间隙横截面上的均匀性,从而消除了产生这种不稳定性的原因。用氦气对DF激光器的活性介质进行显着稀释直至大气压使我们可以达到极限放电起始频率,而活性介质的替代率K类似于1。

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