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Effect of ion acceleration on a plasma potential profile formed in the expander of a mirror trap

机译:离子加速度对镜陷阱扩展器中形成的等离子体电势分布的影响

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We consider a flow of completely ionized magnetized plasma streaming along divergent magnetic field lines from an open magnetic trap. An analytical model is proposed that takes into account a transition from a collisional (fluid) regime to a collisionless kinetic regime as the flow expands. This allows for study of the formation of a plasma potential along the magnetic field and the acceleration of ions in a self-consistent way. We show that ion acceleration may influence the potential profile; in particular, it significantly reduces the potential gap inside the Debye sheath near the plasma collector. This positive effect predicts low arcing in plasma absorbing units, which is important for all large-scale fusion-aimed experiments in mirror machines. Applications of the theory to smaller table-top machines are also considered.
机译:我们考虑了一个完全电离的磁化等离子体流,它们沿着来自开放磁阱的发散磁场线流动。提出了一种分析模型,该模型考虑了随着流动扩展从碰撞(流体)状态到无碰撞动力学状态的过渡。这允许以自洽的方式研究沿着磁场的等离子体电势的形成和离子的加速度。我们证明了离子加速度可能会影响电势分布。特别是,它显着减小了等离子体收集器附近的德拜鞘内部的电位间隙。这种积极的作用预示着等离子体吸收装置中的电弧不足,这对于镜机中的所有大规模聚变瞄准实验都是重要的。还考虑了该理论在小型台式机上的应用。

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