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Electron streaming from central core region in inertial-electrostatic confinement fusion

机译:惯性-静电约束聚变中中心区域的电子流

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In a steady operation of inertial electrostatic confinement fusion (IECF), the electrons produced within a wire cathode should escape out and reach the anode-on the other hand the ions accelerated towards the cathode should enter the cathode eventually. To verify the guess, we developed a 3-D simulation code and studied formation of a potential distribution, electron trajectories and ion trajectories. The simulation results support electron streaming from the central region through the center area of opening of the cathode, which explains the distinctive discharge called a star mode commonly observed in the IECF experiments.
机译:在惯性静电约束聚变(IECF)的稳定运行中,线阴极中产生的电子应逸出并到达阳极-另一方面,朝阴极加速的离子最终应进入阴极。为了验证这一猜测,我们开发了3D模拟代码并研究了电势分布,电子轨迹和离子轨迹的形成。仿真结果支持电子从中心区域流到阴极开口的中心区域,这解释了在IECF实验中通常观察到的称为星型的独特放电。

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