The beneficial effects of phase velocity jumping technology in broad band CCTWT

Z. Zi, Lili Fan, Guangqing Zhang
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Abstract

In coupling cavity travelling-wave tube (CCTWT), the gain and efficiency band-widths are not coincident, that is, at the high-frequency there is lower gain and at the low-frequency the efficiency is lower. This restricts the useful range of operating frequencies. Phase velocity jumping technology has been developed as a way to improve the efficiency of CCTWT at first. In this article, we discuss improving bandwidth characteristic of CCTWT by using phase velocity jumping technology, and the conclusion based on Pierce wave theory gives that the gain bandwidth and efficiency bandwidth could be balanced at the high-frequency and low-frequency by choosing a special phase velocity of natural circuit wave for output section, this velocity is lower than the phase velocity of natural circuit wave in input section and mid section. Thus electron beam velocity is synchronized with velocity of natural circuit wave at high-frequency in input section and mid section, but in output section, it is synchronized at low-frequency. In this article, we also discuss the advantages brought to periodic permanent magnet focus system when apply phase velocity jumping. Otherwise, the application of phase velocity jumping can also reduce 2/spl pi/ mode oscillation.
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相速度跳变技术在宽带CCTWT中的有益效果
在耦合腔行波管(CCTWT)中,增益和效率带宽不重合,即高频增益较低,低频效率较低。这限制了工作频率的有效范围。相速度跳变技术最初是作为提高CCTWT效率的一种手段而发展起来的。本文讨论了采用相速度跳变技术改善CCTWT的带宽特性,并根据皮尔斯波理论得出结论:在输出段选择一个特定的自然电路波相速度,该相速度低于输入段和中段的自然电路波相速度,可以在高频和低频处平衡增益带宽和效率带宽。因此,电子束速度在输入段和中段与自然回路波速度在高频同步,而在输出段与自然回路波速度在低频同步。本文还讨论了采用相速度跳变给周期性永磁聚焦系统带来的优点。另外,采用相速度跳变也可以减小2/spl pi/模振荡。
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