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Waveguide CO2 laser gain: Dependence on gas kinetic and discharge properties

机译:波导CO2激光增益:取决于气体动力学和放电特性

摘要

Using a simple rate equation approach the gas kinetic and discharge properties of waveguide CO2 lasers were examined. The dependence was calculated of the population inversion and laser small signal gain on gas pressure, gas mixture, pumping rate (discharge current), tube bore diameter, and wall temperature. At higher pressures the gain is optimized by using more helium rich mixtures and smaller bore diameters. The dependence of laser tunability on the gas kinetic properties and cavity losses was determined, it was found that for loss cavities the laser tunability may substantially exceed the molecular fullwidth at half maximum. The more helium rich gas mixtures give greater tunability when cavity losses are small and less tunability when cavity losses are large. The role of the various gases in the waveguide CO2 laser is the same as that in conventional devices, by contrast with conventional lasers, the waveguide laser transition is homogeneously broadened. The dependence of gain on gas pressure and other kinetic and discharge properties differs substantially from that predicted by scaling results from conventional low pressure lasers.
机译:使用简单的速率方程方法,研究了波导CO2激光器的气体动力学和放电特性。计算出人口反转和激光小信号增益对气体压力,气体混合物,泵浦速率(放电电流),管孔直径和壁温的依赖性。在较高压力下,通过使用更多的富氦混合物和较小的孔径来优化增益。确定了激光可调谐性对气体动力学性质和腔损失的依赖性,发现对于损失腔,激光可调谐性可能实质上超过分子半峰宽。当空腔损失较小时,富含氦气的气体混合物具有更大的可调谐性,而在空腔损失较大时,可调谐性较低。波导CO2激光器中各种气体的作用与常规设备相同,与常规激光器相比,波导激光器的过渡均匀地变宽。增益对气压的依赖性以及其他动力学和放电特性与常规低压激光器按比例缩放结果所预测的相差很大。

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    Cohen S. C.;

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  • 年度 1975
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