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Progress in Mirror-Based Fusion Neutron Source Development

机译:基于镜像融合中子源开发的进展

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The Budker Institute of Nuclear Physics in worldwide collaboration has developed a project of a 14 MeV neutron source for fusion material studies and other applications. The projected neutron source of the plasma type is based on the gas dynamic trap (GDT), which is a special magnetic mirror system for plasma confinement. Essential progress in plasma parameters has been achieved in recent experiments at the GDT facility in the Budker Institute, which is a hydrogen (deuterium) prototype of the source. Stable confinement of hot-ion plasmas with the relative pressure exceeding 0.5 was demonstrated. The electron temperature was increased up to 0.9 keV in the regime with additional electron cyclotron resonance heating (ECRH) of a moderate power. These parameters are the record for axisymmetric open mirror traps. These achievements elevate the projects of a GDT-based neutron source on a higher level of competitive ability and make it possible to construct a source with parameters suitable for materials testing today. The paper presents the progress in experimental studies and numerical simulations of the mirror-based fusion neutron source and its possible applications including a fusion material test facility and a fusion-fission hybrid system.
机译:全球合作中的Budker核物理研究所已开发出一个14 Mev中子源的融合材料研究和其他应用项目。等离子体型的投影中子源基于气体动态阱(GDT),其是用于等离子体限制的特殊磁镜系统。最近在Budker研究所的GDT设施的最近实验中实现了等离子体参数的基本进展,这是源的氢气(氘)原型。证明了稳定的热离子等离子体与超过0.5的相对压力的限制。在具有中等功率的附加电子回火共振加热(ECRH)的状态下,电子温度高达0.9kev。这些参数是轴对称开放镜陷阱的记录。这些成就在更高水平的竞争能力上提升了GDT的中子源的项目,并使其可以构建适合于今天材料测试的参数的源。本文介绍了镜子基熔母中子源的实验研究和数值模拟的进展及其可能的应用,包括融合材料测试设施和融合裂变混合系统。

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