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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >MONTE CARLO SIMULATION OF ELECTRON MOTION IN MAGNETICALLY CONFINED CO GAS LASER DISCHARGES
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MONTE CARLO SIMULATION OF ELECTRON MOTION IN MAGNETICALLY CONFINED CO GAS LASER DISCHARGES

机译:磁约束CO气体激光放电中电子运动的蒙特卡罗模拟

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Monte Carte simulation has been used to investigate electron motion in magnetically confined CO gas laser discharges. The influences of a perpendicular magnetic field on electron transport coefficients have been studied. Data on transverse and perpendicular velocities, mean energy and numbers of several types of collisions are evaluated at various magnetic field types and strengths. The results show that the applied magnetic field decreases the transverse velocity, mean energy and ionization coefficient, and increases the perpendicular velocity. The high perpendicular velocity suppresses localized thermal electron constriction, giving a higher input power loading. The applied magnetic field also increases the number of collisions, resulting in increasing losses of the electron energy obtained from the electric field, especially the losses in vibrational levels. The magnetic field distribution and strength have great effects on the electron transport coefficients and the discharge properties. [References: 11]
机译:蒙特卡特模拟已用于研究磁约束CO气体激光放电中的电子运动。研究了垂直磁场对电子传输系数的影响。在各种磁场类型和强度下,可以评估有关横向和垂直速度,平均能量和几种碰撞次数的数据。结果表明,施加的磁场会降低横向速度,平均能量和电离系数,并增加垂直速度。高垂直速度抑制了局部热电子收缩,从而提供了更高的输入功率负载。所施加的磁场还增加了碰撞次数,导致从电场获得的电子能量的损失增加,尤其是振动能级的损失。磁场分布和强度对电子传输系数和放电性能有很大影响。 [参考:11]

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