高真空管中的超能电子和电子运动

E. Linder
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引用次数: 17

摘要

在磁控管振荡器的发展中,主要的困难之一是阴极的过热。本文讨论的影响是至少部分负责这一点,它包括在获得多余的能量由一些电子,然后轰击阴极。该效应还与轨道运行时间、轨道形状、管噪声、截止曲线形状等有关。实验结果表明,在轨道速度上叠加了麦克斯韦速度分布,随机运动的能量来源于轨道运动。这就形成了一种新型的虚阴极。讨论了这种阴极的性能。还讨论了与阴极过热间接相关但对理解阴极过热有必要的主题,例如电子执行循环轨道的情况下的电流和空间电荷现象。包括大量的实验数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Excess-Energy Electrons and Electron Motion in High-Vacuum Tubes
In the development of magnetron oscillators, one of the principal difficulties has been the overheating of the cathode. The present article discusses an effect which is at least partially responsible for this, and which consists in the gaining of excess energy by some electrons, which then bombard the cathode. The effect is of importance also because of its bearing on transit time, orbit shape, tube noise, shape of cutoff curve, etc. Experimental results indicate that a Maxwellian distribution of velocities is superimposed on the orbital velocities, the energy of the random motion being derived from the orbital motion. This leads to the formation of a new type of virtual cathode about the real cathode. The properties of this type of cathode are discussed. Subjects related only indirectly to cathode overheating, but necessary to its understanding, also are discussed, such as current flow and space-charge phenomena for cases in which electrons execute cyclic orbits. Extensive experimental data are included.
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