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A coupled mode description of the backward–wave oscillator and the Kompfner dip condition

机译:反向波振荡器和Kompfner倾角条件的耦合模式描述

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摘要

The start oscillation condition for the backward-wave oscillator and the operation of the traveling-wave tube amplifier at the Kompfner dip point are described from the point of view of the coupling of two modes of propagation. Growing waves are not involved. Two waves are sufficient when the tube is more than a half plasma wavelength long. Operation in this "large space charge" domain is inherently simpler than in the "low space charge" domain. The start oscillation condition and the Kompfner dip condition are simply expressed in terms of the coupling constant between modes, HL = (2n ± 1) π/2, where n is an integer. In addition, the uncoupled modes must have the same velocity. The result is also expressed in terms of the more familiar parameters CN and hL. The effect of loss in the circuit mode is calculated. When the two waves carry energy in opposite directions, growing waves result. This case is discussed briefly.
机译:从两种传播方式的耦合的角度描述了后向波振荡器的起始振荡条件和在Kompfner下降点的行波管放大器的操作。不涉及不断增加的浪潮。当灯管的等离子波长超过一半时,两个波就足够了。本质上,在“大空间电荷”域中的操作比在“低空间电荷”域中的操作简单。用模式之间的耦合常数HL =(2n±1)π/ 2来简单表示启动振荡条件和Kompfner下降条件,其中n是整数。另外,非耦合模式必须具有相同的速度。结果也用更熟悉的参数CN和hL表示。计算电路模式下的损耗影响。当两个波在相反的方向上携带能量时,会产生波。简要讨论这种情况。

著录项

  • 作者

    Gould R. W.;

  • 作者单位
  • 年度 1955
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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