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一种用于产生无扰动纯电子等离子体的可伸缩电子发射器。

A retractable electron emitter for the creation of unperturbed pure electron plasmas.

作者信息

Berkery John W, Pedersen Thomas Sunn, Sampedro Luis

机构信息

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

出版信息

Rev Sci Instrum. 2007 Jan;78(1):013504. doi: 10.1063/1.2431090.

Abstract

A retractable electron emitter has been constructed for the creation of unperturbed pure electron plasmas on magnetic surfaces in the Columbia Non-neutral Torus stellarator. The previous method of electron emission using emitters mounted on stationary rods limited the confinement time to 20 ms. A pneumatically driven system that can retract from the magnetic axis to the last closed flux surface in less than 20 ms while filling the surfaces with electrons was designed. The motion of the retractable emitter was modeled with a system of dynamical equations. The measured position versus time of the emitter agrees well with the model and the fastest axis-to-edge retraction was measured to be 20 ms with 40 psig helium gas driving the pneumatic piston.

摘要

在哥伦比亚非中性托卡马克恒星磁体中,为在磁表面上产生无扰动的纯电子等离子体,构建了一种可伸缩电子发射器。以前使用安装在固定杆上的发射器进行电子发射的方法,将约束时间限制在20毫秒。设计了一种气动驱动系统,该系统可以在不到20毫秒的时间内从磁轴缩回至最后一个封闭磁通表面,同时用电子填充这些表面。用动力学方程组对可伸缩发射器的运动进行了建模。测量得到的发射器位置与时间的关系与模型吻合良好,在40 psig氦气驱动气动活塞的情况下,测得最快的从轴到边缘的缩回时间为20毫秒。

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