Free-electron Driven Terahertz Wave Sources Based on Simth-Purcell Effect

Weihao Liu, Zijia Yu, Z. Tao
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引用次数: 1

Abstract

Terahertz electromagnetic wave is one of the hottest research topics in nowadays scientific world thanks to its broad applications in material characterization, medical imaging, wireless communication, and security checking etc. Using free-electron beams to interact with periodic structures via the famous Smith-Purcell effect is an efficient way of generating high-power terahertz radiation. In this chapter, we introduce the basic theory and latest developments of the terahertz radiation schemes using a free-electron beam (including continuous electron beam, a single electron bunch, and a train of electron bunches, etc.) to interact with periodic electromagnetic structures, including grating, surface plasmonics, and subwavelength hole arrays, via a special Smith-Purcell effect or Cherenkov-like effect. A kind of free-electron lasers based on the special Smith-Purcell radiation in the terahertz region is proposed and investigated, which can be developed as high-power terahertz wave sources for practical applications.
基于smith - purcell效应的自由电子驱动太赫兹波源
太赫兹电磁波在材料表征、医学成像、无线通信、安全检测等领域有着广泛的应用,是当今科学界研究的热点之一。利用自由电子束通过著名的史密斯-珀塞尔效应与周期结构相互作用是产生高功率太赫兹辐射的有效方法。在本章中,我们介绍了利用自由电子束(包括连续电子束、单电子束和一列电子束等)与周期性电磁结构(包括光栅、表面等离子体和亚波长空穴阵列)通过特殊的史密斯-珀塞尔效应或切伦科夫效应相互作用的太赫兹辐射方案的基本理论和最新进展。提出并研究了一种基于太赫兹区特殊史密斯-珀塞尔辐射的自由电子激光器,该激光器可作为实际应用的高功率太赫兹波源。
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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