Active RF pulse compression for accelerator applications

J. Hirshfield, A. Vikharev, O. Ivanov, A. Gorbachev, V. Isaev, M. A. Lapointe, V. Yakovlev, O.A. Nezevenko, S. Gold, A. Kinkead
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引用次数: 3

Abstract

Active RF pulse compression relies on use of a component in the RF circuit that can be switched from one state to another in a time much shorter than the desired RF pulse width. This paper reviews work wherein (a) the switching is accomplished using rapidly-ionized plasma tubes to detune a resonator that forms one reflector for an energy storage cavity, and (b) the switching is accomplished by rapidly switching the dielectric constant of low-loss ferroelectric elements in an energy storage cavity. Recent experiments to produce >50 MW compressed rf pulses at 11.4 GHz using plasma switches are described, while recent designs for ferroelectric switches are also described. The latter may have the advantage of permitting more than one switching during a single RF input pulse, thus allowing the efficiency to be greater than that for a single switching.
用于加速器应用的有源射频脉冲压缩
有源射频脉冲压缩依赖于射频电路中可以在比期望的射频脉冲宽度短得多的时间内从一种状态切换到另一种状态的元件的使用。本文回顾了以下工作:(a)开关是使用快速电离等离子体管来失调谐谐振器来形成能量存储腔的一个反射器,以及(b)开关是通过快速切换能量存储腔中低损耗铁电元件的介电常数来完成的。描述了最近使用等离子体开关在11.4 GHz产生>50 MW压缩rf脉冲的实验,同时也描述了铁电开关的最新设计。后者可能具有在单个射频输入脉冲期间允许多个开关的优点,从而允许效率大于单个开关的效率。
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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