110 GHz和140 GHz高功率回旋管的研制

T. S. Chu, M. Blank, P. Borchard, P. Cahalan, S. Cauffman, K. Felch, H. Jory
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引用次数: 18

摘要

在电子回旋加热或核聚变实验的电流驱动中,需要大功率、长脉冲或连续毫米波源。回旋管振荡器多年来一直是这一领域的有效来源。为了降低系统成本,需要兆瓦级的回旋管。在CPI,各种项目正在进行中,以提供长脉冲或连续波兆瓦回旋加速器。特别是,我们正在建造一个110千兆赫、10秒、1.5兆瓦的回旋加速器。这个回旋管将于2004年初完工。此外,我们已经制造并正在测试140 GHz的1 MW连续波回旋管。这两个回旋管的主要特点包括准光学内部变换器、二极管型电子枪、CVD(化学气相沉积)金刚石输出窗口和单级压抑集热器。在本文中,我们将总结110 GHz和140 GHz回旋管的基本设计,并报告在兆瓦、连续波、140 GHz回旋管上获得的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of high power gyrotrons at 110 GHz and 140 GHz
High-power, long-pulse or CW millimeter-wave sources are required in electron cyclotron heating or current drive for fusion experiments. Gyrotron oscillators have served as effective sources in this area for many years. To reduce system cost, megawatt gyrotrons are required. At CPI, various programs are underway to deliver long pulse or CW megawatt gyrotrons. In particular, we are building a 110 GHz, 10 sec, 1.5 MW gyrotron. This gyrotron will be completed in early 2004. In addition, we have fabricated and are currently testing a 1 MW CW gyrotron at 140 GHz. Key features of these two gyrotrons include quasi-optical internal converters, diode-type electron guns, CVD (chemical vapor deposition) diamond output windows, and single-stage depressed collectors. In this paper, we will summarize the basic design of the 110 GHz and 140 GHz gyrotrons and report on the experimental results obtained on the megawatt, CW, 140 GHz gyrotron.
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