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The Pierce instability in neutralized inertial confinement fusion ion beams

机译:中和惯性约束聚变离子束中的皮尔斯不稳定性

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The stability of a charge and current neutralized electron‐ion beam propagating between two planar boundaries is investigated. For equipotential boundaries the beam is, as originally shown by Pierce, electrostatically unstable for electron current densities above a certain limiting value. If, however, the electric field at the upstream boundary is required to vanish, there is no instability. An intermediate case, in which the two boundaries are electrically connected with a finite conductivity plasma, corresponds to the proposed use of neutralized light and heavy ion beams for inertial confinement fusion drivers. Results indicate such beams can propagate either stably or with zero‐frequency Pierce instability growth rates which are probably insignificant. lectric currents; boundary conditions; current density; electric fields; plasma;
机译:研究了在两个平面边界之间传播的电荷和电流中和的电子离子束的稳定性。对于等电位边界,如皮尔斯最初所示,对于高于一定极限值的电子电流密度,束在静电上不稳定。但是,如果需要消除上游边界处的电场,则不会出现不稳定。中间情况,其中两个边界与有限电导率等离子体电连接,对应于建议将中和的轻离子束和重离子束用于惯性约束聚变驱动器。结果表明,此类光束可以稳定传播,也可以零频率的皮尔斯不稳定性增长速率传播,这可能微不足道。电流;边界条件;当前密度;电场等离子体;

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    《Journal of Applied Physics》 |1982年第6期|P.4093-4098|共6页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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