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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Stable and efficient operation of a large-bore copper vapor laser with funnel-shaped, grooved copper electrodes
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Stable and efficient operation of a large-bore copper vapor laser with funnel-shaped, grooved copper electrodes

机译:具有漏斗形的沟槽铜电极的大孔铜蒸气激光的稳定有效操作

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摘要

Using an appropriate design of electrodes and adjustment of the thyratron decoupling circuit as a high-repetition-rate and high-voltage switch, very stable operation of a copper vapor laser at high pressures was obtained. This was achieved by canceling the intense filamentation in the laser plasma at the higher pressures. The transverse grooves on the inner surface of the funnelshaped copper electrodes permit operation of the laser up to 100 torr. This design reduces the cathode-fall voltage, and as a result reduces the thermal loading in the cathode-fall region. The optimum pressure was 80 torr. At this condition the output power was more than that observed with expensive molybdenum electrodes in a similar laser system.
机译:使用适当的电极设计和Thyratron去耦电路的调节作为高重复速率和高压开关,获得高压下铜蒸气激光的非常稳定的操作。 这是通过在较高压力下取消激光等离子体中的强烈丝状来实现的。 漏斗的铜电极的内表面上的横向槽允许激光器的操作高达100托。 该设计降低了阴极降压,结果减少了阴极落区区域的热负荷。 最佳压力为80托。 在这种情况下,输出功率比在类似激光系统中的昂贵的钼电极观察到的输出功率。

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