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Magnetic and electrostatic confinement of plasma in a field reversed configuration

机译:场反转配置下等离子体的电磁和静电约束

摘要

A system and method for containing plasma and forming a Field Reversed Configuration (FRC) magnetic topology are described in which plasma ions are contained magnetically in stable, non-adiabatic orbits in the FRC. Further, the electrons are contained electrostatically in a deep energy well, created by tuning an externally applied magnetic field. The simultaneous electrostatic confinement of electrons and magnetic confinement of ions avoids anomalous transport and facilitates classical containment of both electrons and ions. In this configuration, ions and electrons may have adequate density and temperature so that upon collisions they are fused together by nuclear force, thus releasing fusion energy. Moreover, the fusion fuel plasmas that can be used with the present confinement system and method are not limited to neutronic fuels only, but also advantageously include advanced fuels.
机译:描述了一种用于容纳等离子体并形成场反向构造(FRC)磁拓扑的系统和方法,其中等离子体离子被磁性地容纳在FRC中的稳定的非绝热轨道中。此外,电子通过调谐外部施加的磁场而静电包含在深能量阱中。电子的静电限制和离子的磁性限制同时避免了异常传输,并促进了电子和离子的经典包容。在这种配置中,离子和电子可以具有足够的密度和温度,从而在碰撞时它们会被核力融合在一起,从而释放出融合能。此外,可与本发明的限制系统和方法一起使用的聚变燃料等离子体不仅限于中子燃料,还有利地包括高级燃料。

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