亚毫米连续波回旋管的理论与实验研究

M. Glyavin, A. Kuftin, O.V. Maligin, V. Manuilov, M. Moiseev, A. Sedov, V. Zapevalov, N. Zavolsky
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引用次数: 0

摘要

本文介绍了IAP RAS相对低功率(10-100 W)亚毫米连续波回旋管的研究活动。这些研究始于20世纪70 - 80年代[1-2],并开发了几种具有独特参数的管。这次在IAP RAS获得了破纪录的辐射功率和频率结果(0.3太赫兹连续回旋管在回旋频率的二次谐波下为1.5 kW)。在20世纪末,主要的努力集中在开发兆瓦级功率的回旋管用于核聚变实验,亚毫米波活动相当缓慢。目前,对亚毫米器件的兴趣已经加强,因为这个频率范围对许多应用具有吸引力,包括等离子体诊断,电子自旋共振光谱,利用动态核极化增强核磁共振灵敏度,爆炸物和武器的对峙探测和成像,新的医疗技术,大气监测,化学技术,高纯度材料的生产,深空和专门卫星通信等[3-5]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical and experimental investigations of submillimeter CW gyrotrons
This paper presents an overview of research activity for development of relatively low-power (10–100 W) submillimeter CW gyrotrons at the IAP RAS. Those investigations were started in the 1970–80s [1–2] and several tubes with unique parameters have been developed. This time at the IAP RAS were obtained record-breaking results of power and frequency of radiation (1.5 kW for 0.3 THz CW gyrotron at the second harmonic of gyrofrequency). During the end of the 20-th century main efforts were concentrated on development of megawatt power level gyrotrons for nuclear fusion experiments and submillimeter wave activity was rather slackened. At present, interest to submillimeter devices has been strengthened since this frequency range is attractive for numerous applications, which include plasma diagnostics, electron-spin resonance spectroscopy, enhancement of NMR sensitivity using dynamic nuclear polarization, standoff detection and imaging of explosives and weapons, new medical technology, atmospheric monitoring, chemical technologies, production of high-purity materials, deep space and specialized satellite communication etc [3–5].
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