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magnetic fusion devices. The activities aim to answer scientific fundamental questions and generate basic knowledge to significantly advance in the | magnetic fusion devices. The activities aim to answer scientific fundamental questions and generate basic knowledge to significantly advance in the | ||
comprehension and understanding of LM plasmoids capable of contributing to the major task of power exhaust in future fusion devices. This proposal | comprehension and understanding of LM plasmoids capable of contributing to the major task of power exhaust in future fusion devices. This proposal | ||
pursues to continue a recently open research line with Sn prototypes (in which a novel | pursues to continue a recently open research line with Sn prototypes (in which a novel LM embedded Langmuir Probe configuration has been developed [5] for | ||
LM plasmoid diagnosis), fully extend it to SnLi alloy targets and develop technological upgrades to eventually apply this research to pure | |||
lithium PFCs. The proposed works will be conducted in collaboration with world class, leading institutions in the fields of nuclear fusion and LM PFCs | lithium PFCs. The proposed works will be conducted in collaboration with world class, leading institutions in the fields of nuclear fusion and LM PFCs | ||
both in Europe (DiFFER, Netherlands) and USA (University of Illinois at Urbana-Champaign). | both in Europe (DiFFER, Netherlands) and USA (University of Illinois at Urbana-Champaign). | ||
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== References == | == References == | ||
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