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Research of Basic Plasma Physics Toward Nuclear Fusion in LHD

机译:LHD核聚变的基本等离子体物理研究

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There are various physics issues which the LHD can explore in the research field of transport studies in high temperature plasmas, research for MHD stability in high density and high beta plasma, that are crucial for a future device aimed at nuclear fusion. Physics of the confinement improved mode is discussed with a new paradigm of non-linearity, non-diffusivity and non-locality of the transport. Various MHD modes are observed such as the interchange mode and high energy particle driven modes. Magnetic island physics are intensively studied by applying a perturbation field or by controlling the magnetic shear with NBCD. The LHD also gives opportunities to extend research beyond plasma physics. Research concerning atomic processes such as a test of the collisional-radiative model and energy levels of highly charged heavy ions are also investigated using the plasma in LHD.
机译:在高温等离子体的运输研究,高密度和高β等离子体的MHD稳定性研究中,LHD可以探索各种物理问题,这对于未来针对核聚变的设备至关重要。用运输的非线性,非扩散性和非局部性的新范式讨论了禁闭改进模式的物理原理。观察到各种MHD模式,例如交换模式和高能粒子驱动模式。通过应用扰动场或通过NBCD控制磁切变,对磁岛物理学进行了深入研究。 LHD还提供了将研究范围扩展到等离子体物理以外的机会。还使用LHD中的等离子体研究了有关原子过程的研究,例如碰撞辐射模型的测试和高电荷重离子的能级。

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