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New trend in the technology of cw RF-excited sealed CO2 waveguide lasers

机译:连续波射频激励密封CO2波导激光器技术的新趋势

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Abstract: An investigation and optimization of a single channel transverse RF excited CW sealed CO$-2$/ waveguide laser is presented. The laser performance has been studied as a function of various parameters like the excitation frequency, gas pressure, gas mixture composition, and cooling temperature for two pairs of metal electrodes with equivalent sizes, but made of different material - gold plated copper and aluminum. The waveguide structure used was metal-ceramic with an active discharge volume of 2.5$MUL@2.5$MUL@370 mm$+3$/. Single-pass small-signal gain measurements for the two sets of electrodes have been performed, as well. The experiments show that the influence of the electrode material on the laser behavior is significant, while it was generally accepted as a factor of no importance. The best result we obtained with the Al electrodes was a specific output power of 0.78 W/cm with an efficiency of 11% at 125 MHz excitation frequency and 140 Torr of 1:1:5$PLU@5% (CO$-2$/:N$-2$/:He$PLU@Xe) gas mixture, which is very close to the highest specific power of 0.85 W/cm, previously reported. With the gold plated electrodes a specific output power of 1.1 W/cm with an efficiency of about 13% was achieved at 190 MHz and 100 Torr 1:1:5$PLU@5% gas mixture. This improvement is most likely related to the catalytic properties of the gold layers. This favorable process is accelerated at elevated temperatures, so that an intensive cooling is not necessary for good laser performance. The gain measurements confirmed this behavior. With gold plated electrodes at certain experimental conditions an increase of the gain of a factor 2 was observed. !14
机译:摘要:提出了单通道横向射频激发连续波密封CO $ -2 $ /波导激光器的研究和优化。研究了激光性能与各种参数的函数关系,例如激励频率,气压,气体混合物组成和冷却温度,用于两对尺寸相同但由不同材料制成的金属电极-镀金铜和铝。所使用的波导结构是金属陶瓷,其有效放电体积为2.5 $ MUL @ 2.5 $ MUL @ 370 mm $ + 3 $ /。两组电极的单通小信号增益测量也已执行。实验表明,电极材料对激光行为的影响是显着的,而通常认为它是不重要的因素。我们使用Al电极获得的最佳结果是0.78 W / cm的比输出功率,在125 MHz激励频率下的效率为11%,140 Torr的比例为1:1:5 $ PLU @ 5%(CO $ -2 $ /:N $ -2 $ /:He $ PLU @ Xe)混合气体,非常接近之前报道的最高比功率0.85 W / cm。使用镀金电极,在190 MHz和100 Torr 1:1:5 $ PLU @ 5%的气体混合物下,可获得1.1 W / cm的比输出功率,效率约为13%。这种改善很可能与金层的催化性能有关。这种有利的过程在升高的温度下会加速,因此对于良好的激光性能而言,无需进行大量冷却。增益测量证实了这种行为。对于在某些实验条件下镀金的电极,观察到增益增加了2倍。 !14

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