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Studies of non-neutral ion electron plasmas confined on magnetic surfaces.

机译:限制在磁性表面上的非中性离子电子等离子体的研究。

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This thesis presents the first detailed study of an instability driven by the presence of a finite ion fraction in an electron-rich non-neutral plasma, confined on magnetic surfaces. The mode appears when the ion density exceeds approximately 10% of the electron density, and the measured frequency dependences imply that the mode consists of resonantly interacting perturbations of electrons and ions. In the Columbia Non-neutral Torus (CNT), the instability has a poloidal mode number m=1, which does not correspond to a rational surface. This implies that parallel force balance of the electron fluid is broken. A global instability that does not resonate with a rational surface has never before been observed in a stellarator.; The experiments show that the mode persists even for large magnetic field strengths, except when the ion species is hydrogen. For the case of hydrogen, substantial suppression of the mode is seen at high magnetic fields. A numerical code was written which integrates ion trajectories in the stable equilibrium of CNT. Comparing the code results with the observed mode behavior, it was found that the plasma is unstable as long as the ion Larmor radius is not much smaller than the size of the plasma. When the Larmor radius is small the ion density profiles are very hollow in CNT. The code results also indicate that the ion rotation frequency oi in CNT had a broad spectrum; this is an important difference from the ion motion in a simple cylindrically symmetric electron plasma, where the ions all have a single rotation frequency. This code result is consistent with experimental observations in CNT---the mode can be exited over a broad range of frequencies.
机译:本文提出了对不稳定性的第一个详细研究,该不稳定性是由有限的离子分数在富电子的非中性等离子体(存在于磁性表面)中驱动的。当离子密度超过电子密度的大约10%时,将出现该模式,并且测得的频率相关性意味着该模式由电子和离子的共振相互作用扰动组成。在哥伦比亚非中性圆环(CNT)中,不稳定性的极谱数为m = 1,不对应于有理表面。这意味着电子流体的平行力平衡被破坏。从来没有在恒星器中观察到不与合理表面产生共鸣的全局不稳定性。实验表明,即使对于较大的磁场强度,该模式仍然存在,除非离子种类为氢。对于氢的情况,在高磁场下可以看到模式的明显抑制。编写了一个数字代码,该代码将离子轨迹整合到CNT的稳定平衡中。将代码结果与观察到的模式行为进行比较,发现只要离子拉莫尔半径不小于等离子体的大小,等离子体就不稳定。当拉莫尔半径较小时,CNT中的离子密度分布非常空心。编码结果还表明,CNT中的离子旋转频率oi具有较宽的光谱。这与简单的圆柱对称电子等离子体中的离子运动有重要区别,在简单的圆柱形对称电子等离子体中,离子都具有单个旋转频率。此代码结果与CNT中的实验观察结果一致-该模式可以在很宽的频率范围内退出。

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