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Relativistic multiwave oscillators

机译:相对论多波振荡器

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摘要

This report is a brief review of advances in a rapidly developing realm of science — relativistic high-frequency electronics. The term relativistic high-frequency electronics is presently used in reference to that area of vacuum electronics which harnesses electron beams with energies of 0.2–100 MeV and currents up to 104 A. The resultant microwave oscillators range up to 109–1010 W in power for a pulse duration of 10−9–10−7 s. The wavelengths utilized in this field lie in the interval from several dozen centimeters to values belonging to the visible range, i.e., span six orders of magnitude. Naturally, the family of the devices employed in these ranges is highly diversified. However, it turns out that many of them are well known in conventional microwave electronics. In this connection, of interest is the advancement of new ideas of vacuum electronics, aimed at raising the generated-or amplified-signal power and at mastering new wavelength ranges. The present report is concerned with this aspect of relativistic high-frequency electronics. It is pertinent to note that there are excellent reviews dedicated to relativistic high-frequency electronics and its application (see, for instance, Ref. [1]). Here, we endeavor to call attention to those aspects of the development of this area, which for several reasons have not been adequately discussed in the foregoing and other reviews.
机译:本报告简要回顾了相对论高频电子学在迅速发展的科学领域中的进展。目前,相对论高频电子学是指真空电子学领域,该领域利用能量为0.2–100 MeV的电子束和高达104 A的电流。所产生的微波振荡器的功率范围为109–1010 W脉冲持续时间为10-9-9-7 s。在该场中使用的波长处于从几十厘米到属于可见范围的值的间隔,即,跨越六个数量级。自然地,在这些范围内使用的设备系列高度多样化。然而,事实证明,它们中的许多在常规微波电子学中是众所周知的。在这方面,感兴趣的是真空电子学的新思想的发展,其目的是提高产生或放大的信号功率并掌握新的波长范围。本报告涉及相对论高频电子学的这一方面。值得注意的是,对相对论高频电子学及其应用有很好的评论(例如,参见参考文献[1])。在这里,我们努力提请人们注意这一领域发展的那些方面,由于一些原因,在前述和其他评论中没有充分讨论这些方面。

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