Medium power compact sources of electromagnetic radiation in millimeter and sub-millimeter ranges

A. Kuleshov, B. Yefimov
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引用次数: 1

Abstract

Sources of electromagnetic radiation in THz range with high enough power and wide frequency range are necessary for an increasing number of applications in the technologies and many scientific researches including high data rate communications, remote high resolution imaging, chemical spectroscopy, materials research, deep space research and communications, biomedical diagnostics, radar and remote sensing system, diagnostics of plasma, concealed weapon or threat detection and etc.However, at present a lot of customers are unable to use the advantages of the THz wave applications because of the absence of compact, easy in service sources. Existing gyrotrons are powerful devices but they are huge, expensive and difficult in operation complexes. Another and main technical disadvantage of gyrotrons is narrow frequency range. At the same time both solid state devices and BWOs have low level of output power that is not enough for many applications.In this work the description of developed BWO-Clinotrons of millimeter and sub-millimeter ranges is presented. Experimental results on both formation and transportation of intense electron beam interacting with the space harmonics of slowing wave system show the possibility to increase the output power of THz clinotrons. Second part of this work is dedicated to development of low-voltage CRM which can be used in mentioned applications.
毫米和亚毫米范围的中等功率紧凑型电磁辐射源
在高数据速率通信、远程高分辨率成像、化学光谱学、材料研究、深空研究和通信、生物医学诊断、雷达和遥感系统、等离子体诊断、隐藏武器或威胁探测等技术和许多科学研究中,越来越多的应用需要功率足够大、频率范围足够宽的太赫兹范围电磁辐射源。目前很多客户都无法充分利用太赫兹波应用的优势,因为太赫兹波没有紧凑、易于使用的信号源。现有的回旋加速器是一种功能强大的设备,但它们体积庞大,价格昂贵,在复杂的操作中也很困难。回旋管的另一个主要技术缺点是频率范围窄。同时,固态器件和bwo的输出功率都很低,不足以满足许多应用。本文介绍了研制成功的毫米级和亚毫米级bwo -斜控管。在慢波系统空间谐波作用下强电子束形成和输运的实验结果表明了提高太赫兹倾激加速器输出功率的可能性。本文的第二部分致力于开发可用于上述应用的低压CRM。
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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