Production and application of dense Penning trap plasmas

D. Barnes, R. Nebel, L. Turner
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引用次数: 25

Abstract

A new paradigm for producing well‐confined, dense‐thermonuclear plasmas is described. The convergence of a radial beam distribution of a Penning‐trap‐confined plasma produces a dense inertially confined non‐neutral plasma. The equilibrium, stability, classical transport, and particle‐handling properties of such a concept are developed. The application of this approach to controlled fusion using a pure electron plasma to form a central virtual cathode in which ions are electrostatically confined is discussed. On one hand, extreme plasma control is required, placing the major uncertainty on issues of machine precision. On the other hand, development is characterized by the manufacture and testing of extremely small and inexpensive systems. Thus, it would seem that a timely experimental test of this concept would be ineluctable. Success at such experiments might indicate an alternate path to practical fusion applications.
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致密彭宁阱等离子体的制备与应用
描述了一种产生良好约束的致密热核等离子体的新范例。彭宁阱约束等离子体的径向束分布的收敛产生密集的惯性约束非中性等离子体。开发了这种概念的平衡、稳定性、经典输运和粒子处理特性。讨论了这种方法在利用纯电子等离子体形成一个静电约束离子的中心虚阴极的控制聚变中的应用。一方面,需要极端的等离子体控制,在机器精度问题上放置了主要的不确定性。另一方面,开发的特点是制造和测试极小和廉价的系统。因此,对这一概念进行及时的实验检验似乎是不可避免的。这类实验的成功或许预示着通往实际核聚变应用的另一条道路。
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