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Self‐magnetic‐field‐enhanced ion diode

机译:自磁场增强离子二极管

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An intense ion source has been developed utilizing an ion diode that partially suppresses electron flow using the self‐magnetic field of the diode current. This is an extension of a diode class known as pinch reflex ion diodes. In this case the diode was coupled to the particle beam fusion accelerator and was configured in two different cylindrical designs. The first pinch ion diode was a straight, 42‐cm‐diam cylinder and the second, Obi, was a focusing, 26‐cm‐diam, aspheric barrel. In the Obi diode a central gas cell provided current‐neutralized beam transport. In addition, the accelerator was run in a low‐voltage, 0.8 MV, and a high‐voltage, 2.0 MV, mode. The best results showed that the Obi diode produced 3 TW of protons at 34% efficiency in the high‐voltage mode. We present an analytic model of ion efficiency, compare various diode impedance models, and discuss beam divergence mechanisms. The limitation of this ion source as a fusion driver is presently the 2–3° divergence that we measure using a shadow‐box technique. A companion paper contains numerical simulations and further analytic modeling.
机译:利用离子二极管开发了一种强离子源,该离子二极管可利用二极管电流的自磁场部分抑制电子流动。这是被称为收缩反射离子二极管的二极管类别的扩展。在这种情况下,二极管耦合到粒子束聚变加速器,并配置为两种不同的圆柱设计。第一个收缩离子二极管是一个直径为42厘米的直圆柱,第二个是Obi,是聚焦的,直径为26厘米的非球面镜筒。在Obi二极管中,中央气室提供了电流中和的电子束传输。此外,加速器在低电压0.8 MV和高电压2.0 MV模式下运行。最佳结果表明,Obi二极管在高压模式下以34%的效率产生3 TW的质子。我们提出了一种离子效率分析模型,比较了各种二极管阻抗模型,并讨论了束发散机理。目前,这种离子源作为聚变驱动器的局限性是我们使用影盒技术测量的2–3°散度。随附的论文包含数值模拟和进一步的分析模型。

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    《Journal of Applied Physics》 |1984年第5期|P.1254-1266|共13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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