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Transient behaviors of output power in fast-axial flow-type CO laser

机译:快速轴流式CO激光器输出功率的瞬态行为

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Transient behaviors of output power were experimentally investigated with the parameters of discharge current I/sub dis/, discharge length l, gas-flow velocity /spl nu/, and O/sub 2/ concentration for a compact dc discharged fast-axial flow (FAF) CO laser, and were theoretically explained, together with some empirical equations. Introducing the discharge time (t) dependence into the gas temperature and the concentration of O/sub 2/ and CO/sub 2/ molecules, based on the experimental data and the mass-spectrum analysis, respectively, the overall population density of CO molecule n/sub /spl nu/'/ toward an arbitrary vibrational level has been expressed as a function of t. Then, since the gain parameter can also be given as a function of t, together with the measured laser parameters such as the saturation intensity I/sub s/, a measure of partial homogeneity m, and the Voigt function /spl psi/, the transient behaviors of the output power as a function of t were well explained, being in good agreement with the experimental results and the calculations. From these analyses, it was found that control of the gas temperature rise and suppression of both the decrease of O/sub 2/ and the increase of CO/sub 2/ concentrations are required to relax this unnecessary power reduction due to the transient behaviors.
机译:对于紧凑型直流放电快速轴向流(直流电),用放电电流I / sub dis /,放电长度l,气体流速/ spl nu /和O / sub 2 /浓度的参数对输出功率的瞬态行为进行了实验研究。 FAF)CO激光器,并在理论上进行了解释,并附带了一些经验公式。根据实验数据和质谱分析,分别将放电时间(t)对气体温度和O / sub 2 /和CO / sub 2 /分子的浓度的依赖性引入其中,朝向任意振动水平的n / sub / spl nu /'/已表示为t的函数。然后,由于还可以将增益参数作为t的函数,并与测量的激光参数(例如饱和强度I / sub s /),部分均匀度m的测量值和Voigt函数/ spl psi /一起给出,因此很好地解释了输出功率随t的变化的瞬态行为,与实验结果和计算结果非常吻合。从这些分析中发现,需要控制气体温度升高并抑制O / sub 2 /的降低和CO / sub 2 /浓度的升高,以缓解由于瞬态行为造成的不必要的功率降低。

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