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Free-electron-driven beam-scanning terahertz radiation
Journal article   Peer reviewed

Free-electron-driven beam-scanning terahertz radiation

Juan-Feng Zhu, Chao-Hai Du, Tie-Jun Huang, Lu-Yao Bao, Shi Pan, Pu-Kun Liu and Juanfeng Zhu
Optics express, Vol.27(18), pp.26192-26202
02/09/2019
PMID: 31510478

Abstract

Optics Physical Sciences Science & Technology
A beam-scanning terahertz (THz) radiation mechanism in a free-electron-driven grating system is proposed for THz applications. By loading a period-asynchronous rod array above the grating, the spoof surface plasmon (SSP) originally excited by the electron changes its radiation characteristics owing to the rod-induced Brillouin zone folding effect. The rod array functions as an antenna and converts the SSP into a spatial coherent THz radiation. The radiation frequency and direction can be precisely controlled by the electron energy. The field intensity of the radiation is increased approximately 20 times compared with that of the conventional Smith-Purcell radiation in the same frequency range. In addition, a microwave-band scaling prototype is fabricated and the frequency-controlled radiation is measured. Excellent agreement between the experimental and simulated results is obtained. This study paves the way for the development of on-chip THz sources for advanced communication and detection applications. (C) 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
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https://doi.org/10.1364/OE.27.026192View
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