Advancements of microwave diagnostics in magnetically confined plasmas

A. Mase, Y. Kogi, N. Ito, Y. Yokota, K. Akaki, K. Kawahata, Y. Nagayama, T. Tokuzawa, S. Yamaguchi, H. Hojo, N. Oyama, N. Luhmann, H. Park, A. Donne
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引用次数: 0

Abstract

Microwave to millimeter-wave diagnostic techniques such as interferometry, reflectometry, scattering and radiometry have been powerful tools for diagnosing magnetically confined plasmas. Recent advances in electronic devices and components together with computer technology have enabled the development of advanced diagnostics in microwave to millimeter-wave region. The two-dimensional and three-dimensional profiles of plasma density/temperature and dynamic behaviors of their fluctuations are measured by using the advanced diagnostic systems. The measurements have clarified the physics issues such as stability, wave phenomena and fluctuation-induced transport. We report here on the representative microwave diagnostics and their contribution to plasma confinement physics.
磁约束等离子体微波诊断研究进展
微波到毫米波诊断技术,如干涉测量、反射测量、散射和辐射测量已经成为诊断磁约束等离子体的有力工具。电子器件和元件的最新进展以及计算机技术使微波到毫米波区域的高级诊断得以发展。利用先进的诊断系统测量了等离子体密度/温度的二维和三维分布及其波动的动态行为。测量结果澄清了稳定性、波动现象和波动诱导输运等物理问题。我们在这里报告代表性的微波诊断及其对等离子体约束物理学的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Plasma Devices and Operations
Plasma Devices and Operations 物理-核科学技术
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