Toroidally rotating plasma confinement with a spatially periodic field

C. Ordonez
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引用次数: 1

Abstract

Some possible plasma confinement configurations are identified in which a spatially periodic electrostatic or magnetostatic field may provide or enhance ion confinement. The plasma drifts at a speed much faster than the ion thermal speed. The periodic field has a spatial period that is much smaller than the plasma size, and the field has a non-negligible strength only at the plasma edge. The periodic field could be produced, for example, by a sequence of electrodes with alternating applied voltages or a sequence of wires with alternating current directions. Classical trajectory Monte Carlo simulation results are used to develop expressions for predicting the conditions under which ions are reflected away from an artificially structured boundary that produces a spatially periodic field, without the ions reaching the boundary.
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具有空间周期场的环形旋转等离子体约束
确定了一些可能的等离子体约束构型,其中空间周期性静电或静磁场可以提供或增强离子约束。等离子体的漂移速度比离子的热速度快得多。周期场的空间周期远小于等离子体尺寸,且仅在等离子体边缘处具有不可忽略的强度。周期场可以产生,例如,由一系列电极与交流施加电压或一系列电线与交流的电流方向。经典轨迹蒙特卡罗模拟结果用于开发表达式,预测条件下,离子被反射远离人工结构的边界,产生空间周期场,而离子没有到达边界。
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