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仿星器中稳定的、小德拜长度纯电子等离子体平衡的实验验证。

Experimental confirmation of stable, small-debye-length, pure-electron-plasma equilibria in a stellarator.

作者信息

Kremer J P, Pedersen T Sunn, Lefrancois R G, Marksteiner Q

机构信息

Department of Applied Physics and Applied Mathematics, Columbia University, New York, New York 10027, USA.

出版信息

Phys Rev Lett. 2006 Sep 1;97(9):095003. doi: 10.1103/PhysRevLett.97.095003.

Abstract

The creation of the first small-Debye length, low temperature pure electron plasmas in a stellarator is reported. A confinement time of 20 ms has been measured. The long confinement time implies the existence of macroscopically stable equilibria and that the single particle orbits are well confined despite the lack of quasisymmetry in the device, the Columbia non-neutral torus. This confirms the beneficial confinement effects of strong electric fields and the resulting rapid E x B rotation of the electrons. The particle confinement time is presently limited by the presence of bulk insulating materials in the plasma, rather than any intrinsic plasma transport processes. A nearly flat temperature profile is seen in the inner part of the plasma.

摘要

报告了在仿星器中首次产生小德拜长度、低温纯电子等离子体的情况。已测得约束时间为20毫秒。长时间的约束意味着存在宏观稳定的平衡态,并且尽管该装置(哥伦比亚非中性环面)缺乏准对称性,但单个粒子轨道仍受到良好约束。这证实了强电场的有益约束效应以及由此导致的电子快速E×B旋转。目前,粒子约束时间受等离子体中大量绝缘材料的存在限制,而非任何固有的等离子体输运过程。在等离子体内部观察到近乎平坦的温度分布。

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