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Reproducible High Density Field-Reversed Configuration Plasma for Magnetized Target Fusion

机译:可磁化目标融合的可再现高密度场反转配置等离子体

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Summary form only given. Field-reversed configuration (FRC) plasma will be translated into an imploding metal liner in a magnetized target fusion (MTF) scenario. Field-reversed theta pinch technology is employed with programmed cusp fields at the theta coil ends to achieve non-tearing field line reconnection during FRC formation. In the field reversed configuration experiment with a liner (FRX-L), an optimum formation procedure is identified. The well-formed FRC plasma has volume-averaged density of 2-4times1022 m-3, T e+Ti of 300-500 eV, and plasma lifetime between 15-20 mus. These parameters are very close to the desired parameters of a target plasma for MTF, and they can be reproduced with standard deviation of less than 10% about the mean in consecutive discharges. The FRCs have reasonably good initial flux and particle trapping efficiencies compared with previous lower density experiments. The confinement properties are approximately in agreement with empirical scaling laws obtained from previous experiments with fill pressure mostly less than 20 mtorr. However, due to severe main field modulation, the confinement properties deteriorate quickly when the FRC expands to reach the theta coil ends. Recently, the redesigned crowbar switches have reduced the external main field modulation from 52% previously to 21% now. Better FRC performance is expected in on-going experimental campaigns
机译:仅提供摘要表格。在磁化目标聚变(MTF)情况下,场反转配置(FRC)等离子体将转换为内爆金属衬里。场反转theta收缩技术与theta线圈末端的编程尖点场一起使用,以在FRC形成过程中实现不撕裂的场线重新连接。在使用衬板(FRX-L)的野外反向配置实验中,确定了最佳的成型程序。格式良好的FRC等离子体的体积平均密度为2-4×10 22 m -3 ,T e + T i < / sub> 300-500 eV,血浆寿命在15-20亩之间。这些参数非常接近用于MTF的目标血浆的期望参数,并且可以在连续放电中以小于平均值约10%的标准偏差进行再现。与以前的低密度实验相比,FRC具有相当好的初始通量和粒子捕获效率。密封性能大致与从以前的实验中获得的经验比例定律基本一致,填充压力大多小于20 mtorr。但是,由于严格的主场调制,当FRC扩展到theta线圈末端时,约束性能会迅速恶化。最近,重新设计的撬棒开关将外部主场调制从以前的52%降低到现在的21%。预期正在进行的实验活动中将有更好的FRC性能

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