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Relativistic electron beam generation in a plasma-filled diode with foilless injection into a dense plasma

机译:等离子体填充二极管中相对论电子束的产生,无箔注入稠密等离子体中

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In the experiments an relativistic electron beam (REB)-plasma interaction, the foilless injection of REB from a magnetized diode is of special interest due to the low spread angle of the beam and high repetition rate of the shots. In the experiments presented, the problem of diode shortening in the presence of a dense plasma from the interaction chamber has been solved using a special drift pipe as an anode of the foilless diode. The electron beam (U/sub d//spl sim/0.7 MeV, t/sub b//spl sim/100-200 ns) produced by an axially symmetric magnetically insulated diode has been injected into a magnetized hydrogen plasma column with density ranging from 1/spl middot/10/sup 15/-3/spl middot/10/sup 16/ cm/sup -3/. It has been found that the anode pipe substantially reduces the plasma flow into the diode gap, but does not stop it completely, thus the REB generation in a plasma-filled diode has taken place. In some regimes of the beam generation it becomes possible to increase significantly the injected current and total energy deposition of the beam in comparison with the case of a vacuum magnetized diode of the same geometry. The experiments have shown effective dense plasma heating under the foilless injection.
机译:在实验中,相对论电子束(REB)-等离子体相互作用中,由于束的低扩散角和发射的高重复率,来自磁化二极管的REB的无箔注入特别受关注。在提出的实验中,使用特殊的漂移管作为无箔二极管的阳极,可以解决在相互作用室中存在密集等离子体的情况下二极管缩短的问题。轴向对称的磁绝缘二极管产生的电子束(U / sub d // spl sim / 0.7 MeV,t / sub b // spl sim / 100-200 ns)已注入密度范围为从1 / spl middot / 10 / sup 15 / -3 / spl middot / 10 / sup 16 / cm / sup -3 /。已经发现,阳极管显着减少了流入二极管间隙的等离子体流,但并未完全阻止它,因此在等离子体填充二极管中发生了REB产生。与相同几何形状的真空磁化二极管的情况相比,在某些光束产生方式中,可以显着增加光束的注入电流和总能量沉积。实验表明在无箔注入下有效的密集等离子体加热。

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