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Low-energy electron-beam-pumped lasers

机译:低能电子束泵浦激光器

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Abstract: Low energy electron beams with particle energies of typically 10 to 20 keV are used for pumping gas lasers. Extremely thin (300 nm) ceramic (SiN$-x$/) membranes are used as entrance foils for the electron beam. Laser gas pressure up to several atmospheres is possible using this technique if the dimension of one side of the foil is restricted to about 1 mm. Energy loss of the electrons in the foil is less than 10%. The short range of the low energy electrons in the laser medium leads to a high specific power deposition. In transverse geometry the beam pumped volume is cylindrical with typically 1 to 3 mm diameter. This is well matched with the diameter of optical modes in stable optical cavities. The new pumping method is demonstrated using the 1.73 $mu@m 5d$LB@3/2$RB$-1$/-6p$LB@5/2$RB$-2$/ XeI laser line in Ar-Xe laser gas mixtures at pressures between 130 and 650 mbar. Laser effect was observed for Xe concentrations between 0.1 and 1%. A low threshold pumping power of 5.5 W and a maximum output power of 6 mW at 13 W pumping power were measured. Scaling to higher power and shorter wavelength laser systems is discussed.!16
机译:摘要:粒子能量通常为10到20 keV的低能电子束用于泵浦气体激光器。极薄的(300 nm)陶瓷(SiN $ -x $ /)膜用作电子束的入射箔。如果箔的一侧的尺寸限制在约1mm,则使用该技术可以达到几个大气压的激光气压。箔中电子的能量损失小于10%。激光介质中低能电子的短距离导致高比功率沉积。在横向几何形状中,束泵浦的容积是圆柱形的,直径通常为1到3毫米。这与稳定的光学腔中的光学模式的直径非常匹配。在Ar-Xe激光器中使用1.73 $ mu @ m 5d $ LB @ 3/2 $ RB $ -1 $ /-6p $ LB @ 5/2 $ RB $ -2 $ / XeI激光线演示了新的泵浦方法130至650毫巴之间的气体混合物。 Xe浓度在0.1%和1%之间观察到激光效应。在13 W的泵浦功率下,测得的低阈值泵浦功率为5.5 W,最大输出功率为6 mW。讨论了如何扩展到更高功率和更短波长的激光系统。!16

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