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Optimization of discharge circuit of the TEA CO2 laser with two discharge channels

机译:用两个放电通道的茶二氧化碳激光放电电路的优化

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In order to achieve the highest peak power of radiation pulse and highest output energy, the primary circuit parameters are investigated to optimize the discharge circuit performance of the laser. The structure and the discharge circuit of the laser are discussed at first. To realize synchronous discharge in two discharge channels, the conjunct electrode device for two pairs of discharge electrodes is designed. Finally, the results of the experiments on the primary circuit parameters are given. The discharge is most stable at a pressure of 5.33×104Pa when the pressure of gaseous mixture CO2:N2:He=1:1:3 is changed from 2.67×104 Pa to 6.67×104 Pa. The ratio of storage capacitance to peak capacitance is chosen to be about 1.5-7/3, because residual voltage is lower on this condition and residual voltage is adverse to discharge. When the inductance 330&mgr;H is used, the homogeneous glow discharge in a widest voltage range is obtained. The duration of when the stimuli voltage is increased in homogeneous glow discharge condition. The discharge circuit allows charge and discharge and the magnitude of residual voltage decrease the homogeneous glow discharge in a wide range of pressure of gaseous mixture when these circuit parameters are used. Thus it offers reference to the improvement of output characteristic of TEA CO2 laser with two discharge channels.
机译:为了实现辐射脉冲和最高输出能量的最高峰值功率,研究了主电路参数以优化激光的放电电路性能。首先讨论激光的结构和放电电路。为了实现两个放电通道中的同步放电,设计了两对放电电极的结合电极装置。最后,给出了主电路参数的实验结果。当气态混合物CO2的压力:N 2:1:1:3的压力,从2.67×104Pa变为6.67×104 pa时,放电在5.33×104pa的压力下最稳定。从2.67×104 pa变为6.67×104 pa。存储电容与峰值电容的比率选择为大约1.5-7 / 3,因为在这种情况下剩余电压较低,并且残留电压与放电不利。当使用电感330和MGR; H时,获得最宽电压范围的均匀辉光放电。刺激电压在均匀辉光放电条件下增加时的持续时间。当使用这些电路参数时,放电电路允许充电和放电,并且残余电压的大小在很宽的气态混合物压力范围内降低均匀的辉光放电。因此,它提供了提高茶二氧化碳激光器输出特性的提及两个放电通道。

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