Suppr超能文献

萨哈核物理研究所的MaPLE装置:构造及其等离子体方面

The MaPLE device of Saha Institute of Nuclear Physics: construction and its plasma aspects.

作者信息

Pal Rabindranath, Biswas Subir, Basu Subhasis, Chattopadhyay Monobir, Basu Debjyoti, Chaudhuri Manis

机构信息

Saha Institute of Nuclear Physics, I/AF Bidhannagar, Kolkata 700 064, India.

出版信息

Rev Sci Instrum. 2010 Jul;81(7):073507. doi: 10.1063/1.3458005.

Abstract

The Magnetized Plasma Linear Experimental (MaPLE) device is a low cost laboratory plasma device at Saha Institute of Nuclear Physics fabricated in-house with the primary aim of studying basic plasma physics phenomena such as plasma instabilities, wave propagation, and their nonlinear behavior in magnetized plasma regime in a controlled manner. The machine is specially designed to be a versatile laboratory device that can provide a number of magnetic and electric scenario to facilitate such studies. A total of 36 number of 20-turn magnet coils, designed such as to allow easy handling, is capable of producing a uniform, dc magnetic field of about 0.35 T inside the plasma chamber of diameter 0.30 m. Support structure of the coils is planned in an innovative way facilitating straightforward fabrication and easy positioning of the coils. Further special feature lies in the arrangement of the spacers between the coils that can be maneuvered rather easily to create different magnetic configurations. Various methods of plasma production can be suitably utilized according to the experimental needs at either end of the vacuum vessel. In the present paper, characteristics of a steady state plasma generated by electron cyclotron resonance method using 2.45 GHz microwave power are presented. Scans using simple probe drives revealed that a uniform and long plasma column having electron density approximately 3-5x10(10) cm(-3) and temperature approximately 7-10 eV, is formed in the center of the plasma chamber which is suitable for wave launching experiments.

摘要

磁化等离子体线性实验(MaPLE)装置是萨哈核物理研究所制造的一种低成本实验室等离子体装置,其主要目的是以可控方式研究基本等离子体物理现象,如等离子体不稳定性、波传播及其在磁化等离子体区域的非线性行为。该装置经过专门设计,是一种多功能实验室设备,能够提供多种磁场和电场场景,以促进此类研究。总共36个20匝的磁线圈,设计得便于操作,能够在直径0.30米的等离子体腔室内产生约0.35特斯拉的均匀直流磁场。线圈的支撑结构采用创新方式设计,便于直接制造和轻松定位线圈。该装置的另一个特点在于线圈之间间隔物的布置,这些间隔物可以相当容易地调整,以形成不同的磁场配置。根据真空容器两端的实验需求,可以适当地采用各种等离子体产生方法。在本文中,介绍了使用2.45吉赫兹微波功率通过电子回旋共振方法产生的稳态等离子体的特性。使用简单探针驱动进行的扫描显示,在等离子体腔室中心形成了一个均匀且长的等离子体柱,其电子密度约为3 - 5×10(10)厘米(-3),温度约为7 - 10电子伏特,适合进行波发射实验。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验