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Transport of long-pulse, high-current electron beams in preformed monoatomic plasma channels in the ion focus regime

机译:长脉冲高电流电子束在离子聚焦方式下在预先形成的单原子等离子体通道中的传输

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Experiments have been performed demonstrating the efficient transport of long-pulse, high-current electron beams in well-diagnosed, preformed plasma channels. Channels were created by the low-energy electron-beam ionization of low-pressure monatomic gases. These transport efficiencies are comparable to the optimum values obtained for similar pulse lengths in previous long pulse, electron-beam transport experiments in laser-preionized diethylaniline gas. Experimental results show the development of both transverse current centroid oscillations characteristic of the ion hose instability and the microwave emission indicative of relativistic electron beam-plasma electron two-stream instability. Significant microwave emission indicating rapid growth of the two-stream instability has been observed in the S-band when the space-charge neutralization fraction f/sub e/ exceeds unity.
机译:已经进行了实验,证明了长脉冲大电流电子束在经过充分诊断的预先形成的等离子体通道中的有效传输。通道是由低压单原子气体的低能电子束电离产生的。这些传输效率可与之前在激光预离子化的二乙基苯胺气体中进行的长脉冲电子束传输实验中类似脉冲长度的最佳值相媲美。实验结果表明,离子软管不稳定的横向电流形心振荡特性和表明相对论性电子束-等离子体电子两流不稳定性的微波发射都有所发展。当空间电荷中和率f / sub e /超过1时,在S波段中观察到大量微波发射,表明两流不稳定性迅速增长。

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