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Theoretical and experimental studies of virtual cathode microwave devices

机译:虚拟阴极微波器件的理论和实验研究

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摘要

The results of theoretical and experimental studies of microwave devices with virtual cathodes (VC's) are reviewed. It is shown that the basic factors affecting operation efficiency of these devices are phase separation of electron flux, diode impedance matching with the high-voltage transmission line, and the availability of two characteristic features in the output spectrum. Using nonlinear theory, we have observed the evolution of the electron velocity distribution function in the vicinity of the VC, have found the VC effective temperature, and have studied the fractal indices for various functions in time. This report also describes a series of experiments where 2-D features of the electron dynamics in the vircator are rather important, and 11% generation efficiency with a pinch-vircator was achieved. The understanding of the physical processes occurring in VC microwave devices gained in this work supports the proposal of several new highly efficient concepts for such devices.
机译:综述了带有虚拟阴极(VC)的微波设备的理论和实验研究结果。结果表明,影响这些器件工作效率的基本因素是电子通量的相分离,二极管与高压传输线的阻抗匹配以及输出频谱中两个特征的可用性。利用非线性理论,我们观察了VC附近电子速度分布函数的演变,找到了VC有效温度,并及时研究了各种函数的分形指数。该报告还描述了一系列实验,其中在振动器中电子动力学的二维特征非常重要,并且夹捏式振动器的发电效率达到11%。对这项工作中获得的VC微波设备中发生的物理过程的理解,为这种设备提出了一些新的高效概念的建议。

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