Progress in vircators towards high efficiency: Present state and future prospects

IF 23.9 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY
Sohail Mumtaz , Han Sup Uhm , Eun Ha Choi
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Abstract

Background:

High-power microwave (HPM) sources remain of interest to research due to their diverse range of applications The motivation of this research field is to increase the efficiency of HPM sources. One of the simplest oscillators for HPM generation is a virtual cathode oscillator (vircator), however, it has a poor beam-to-microwave conversion efficiency. Therefore, enhancement of the vircator efficiency has demanded innovative solutions since it first appeared 46 years ago.

Aim of review:

Finding potential methodologies, strategies, and important aspects that may help vircators for better efficiency. Thus, the progress over the last 46 years to improve vircator efficiency using various strategies was summarized in this review. Furthermore, a key idea was also provided for increasing the number of virtual cathodes (VCs) in the beam simultaneously, which might be a useful future technique to achieve high efficiency.

Key scientific concept of review:

A VC is a source of HPM generation. Another factor contributing to the low conversion efficiency in the vircator is that only one VC is formed, and the electron density confined within that single VC is quite modest in comparison to the overall electron density in the device. A considerable number of electrons after escaping from a single VC were lost on the conductive drift-tube wall causing electron loss. This review provides an idea of the formation of multi-VCs in the beam simultaneously. In this way, the generated power of HPM from each newborn VCs sums up to attain better efficiency in one vircator device. Vircator efficiency improved to 28.6% in experiments and 50% in simulations with multiple VCs. This review could be useful in providing a platform for discussing the collective progress made during recent years and highlighting key points for achieving high conversion efficiency that need to be addressed in future studies.

高效蛭石的研究进展:现状与前景
背景:高功率微波(HPM)源因其应用范围广泛而一直备受研究关注。用于产生 HPM 的最简单振荡器之一是虚拟阴极振荡器(vircator),但它的光束-微波转换效率较低。因此,自 46 年前首次出现以来,提高虚拟阴极振荡器的效率一直需要创新的解决方案。综述目的:寻找可能有助于提高虚拟阴极振荡器效率的潜在方法、策略和重要方面。因此,本综述总结了过去 46 年来利用各种策略提高蛭子效率的进展。此外,本综述还提出了同时增加光束中虚拟阴极(VC)数量的关键思路,这可能是未来实现高效率的有用技术。造成窥视器转换效率低的另一个因素是,窥视器中只形成了一个阴极,与设备中的整体电子密度相比,局限在单个阴极中的电子密度非常小。相当数量的电子从单个 VC 逃逸后,在导电漂移管壁上流失,造成电子损失。这篇综述提供了在光束中同时形成多 VC 的思路。这样,每个新生 VC 产生的 HPM 功率相加,就能在一个辐照装置中实现更高的效率。在实验中,使用多 VC 的辐照器效率提高了 28.6%,在模拟中提高了 50%。这篇综述有助于为讨论近年来取得的集体进展提供一个平台,并突出实现高转换效率的关键点,这些关键点需要在未来的研究中加以解决。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Physics Reports
Physics Reports 物理-物理:综合
CiteScore
56.10
自引率
0.70%
发文量
102
审稿时长
9.1 weeks
期刊介绍: Physics Reports keeps the active physicist up-to-date on developments in a wide range of topics by publishing timely reviews which are more extensive than just literature surveys but normally less than a full monograph. Each report deals with one specific subject and is generally published in a separate volume. These reviews are specialist in nature but contain enough introductory material to make the main points intelligible to a non-specialist. The reader will not only be able to distinguish important developments and trends in physics but will also find a sufficient number of references to the original literature.
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