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Formation of high-β plasma and stable confinement of toroidal electron plasma in Ring Trap 1

机译:环形阱1中高β等离子体的形成和环形电子等离子体的稳定约束

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Formation of high-β electron cyclotron resonance heating plasma and stable confinement of pure electron plasma have been realized in the Ring Trap 1 device, a magnetospheric configuration generated by a levitated dipole field magnet. The effects of coil levitation resulted in drastic improvements of the confinement properties, and the maximum local β value has exceeded 70%. Hot electrons are major component of electron populations, and its particle confinement time is 0.5 s. Plasma has a peaked density profile in strong field region [H. Saitoh et al., 23rd IAEA Fusion Energy Conference EXC/9-4Rb (2010)]. In pure electron plasma experiment, inward particle diffusion is realized, and electrons are stably trapped for more than 300 s. When the plasma is in turbulent state during beam injection, plasma flow has a shear, which activates the diocotron (Kelvin–Helmholtz) instability. The canonical angular momentum of the particle is not conserved in this phase, realizing the radial diffusion of charged particles across closed magnetic surfaces. [Z. Yoshida et al., Phys Rev. Lett. 104, 235004 (2010); H. Saitoh et al., Phys. Plasmas 17, 112111 (2010).].
机译:在环形陷阱1装置中实现了高β电子回旋共振加热等离子体的形成和纯电子等离子体的稳定限制,这是由悬浮的偶极场磁体产生的磁层构造。线圈的悬浮作用大大改善了约束性能,最大局部β值已超过70%。热电子是电子种群的主要组成部分,其粒子约束时间为0.5 s。等离子体在强电场区域具有最高的密度分布[H。 Saitoh等人,第23届IAEA聚变能大会EXC / 9-4Rb(2010)]。在纯电子等离子体实验中,实现了向内粒子扩散,并且电子被稳定俘获了300 s以上。当等离子体在射束注入过程中处于湍流状态时,等离子体流会产生剪切力,从而激活介电子(Kelvin–Helmholtz)的不稳定性。在此阶段,粒子的规范角动量不守恒,从而实现了带电粒子在封闭的磁性表面上的径向扩散。 [Z. Yoshida等,Phys Rev.Lett。 104,235004(2010); H. Saitoh等人,《物理学报》 Plasmas 17,112111(2010)。]。

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