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Optimization of the output power of a pulsed gas laser by using magnetic pulse compression

机译:利用磁脉冲压缩优化脉冲气体激光器的输出功率

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Abstract: In pulsed gas lasers, the excitation of the active medium is produced through the discharge of a storage capacitor. Performances of these lasers were essentially linked to the type of switch used and also to its mode of operation. Thyratrons are the most common switches. Nevertheless, their technological limitations do not allow a high repetition rate, necessary for optimization of the output power of this type of laser. These limitations can be surpassed by combining the thyratron to a one stage of a magnetic pulse compression circuit. The mpc driver can improve the laser excitation pulse rise time and increase the repetition rate, increasing the laser output power of pulsed gas laser such as; nitrogen, excimer and copper vapor lasers. We have proposed in this paper a new configuration of magnetic pulse compression, the magnetic switch is place in our case in the charge circuit, and while in the typical utilization of magnetic pulse compression, it is placed in the discharge circuit. In this paper, we are more particularly interested in the design and the modeling of a saturate inductance that represents the magnetic switch in the proposed configuration of a thyratron - mpc circuit combination. !15
机译:摘要:在脉冲气体激光器中,活性介质的激发是通过存储电容器的放电产生的。这些激光器的性能基本上与所用开关的类型以及其操作模式有关。晶闸管是最常见的开关。然而,它们的技术局限性不允许高重复率,这对于优化这种激光器的输出功率是必需的。通过将晶闸管与磁脉冲压缩电路的一级组合,可以克服这些限制。 MPC驱动器可以改善激光激发脉冲的上升时间并提高重复率,从而增加脉冲气体激光器的激光输出功率,例如:氮气,准分子激光器和铜蒸气激光器。我们在本文中提出了一种新的电磁脉冲压缩配置,在我们的情况下,磁性开关放置在充电电路中,而在典型的电磁脉冲压缩利用中,它放置在放电电路中。在本文中,我们对饱和电感的设计和建模特别感兴趣,该电感代表了在thyratron-mpc电路组合的建议配置中的磁性开关。 !15

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