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Design and Simulation of a Multi-Sheet Beam Terahertz Radiation Source Based on Carbon-Nanotube Cold Cathode

Carbon nanotube (CNT) cold cathodes are proving to be compelling candidates for miniaturized terahertz (THz) vacuum electronic devices (VEDs) owning to their superior field-emission (FE) characteristics. Here, we report on the development of a multi-sheet beam CNT cold cathode electron optical syste...

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Autores principales: Zu, Yifan, Yuan, Xuesong, Xu, Xiaotao, Cole, Matthew T., Zhang, Yu, Li, Hailong, Yin, Yong, Wang, Bin, Yan, Yang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6955727/
https://www.ncbi.nlm.nih.gov/pubmed/31842262
http://dx.doi.org/10.3390/nano9121768
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author Zu, Yifan
Yuan, Xuesong
Xu, Xiaotao
Cole, Matthew T.
Zhang, Yu
Li, Hailong
Yin, Yong
Wang, Bin
Yan, Yang
author_facet Zu, Yifan
Yuan, Xuesong
Xu, Xiaotao
Cole, Matthew T.
Zhang, Yu
Li, Hailong
Yin, Yong
Wang, Bin
Yan, Yang
author_sort Zu, Yifan
collection PubMed
description Carbon nanotube (CNT) cold cathodes are proving to be compelling candidates for miniaturized terahertz (THz) vacuum electronic devices (VEDs) owning to their superior field-emission (FE) characteristics. Here, we report on the development of a multi-sheet beam CNT cold cathode electron optical system with concurrently high beam current and high current density. The microscopic FE characteristics of the CNT film emitter is captured through the development of an empirically derived macroscopic simulation model which is used to provide representative emission performance. Through parametrically optimized macroscale simulations, a five-sheet-beam triode electron gun has been designed, and has been shown to emit up to 95 mA at 3.2 kV. Through careful engineering of the electron gun geometric parameters, a low-voltage compact THz radiation source operating in high-order [Formula: see text] mode is investigated to improve output power and suppress mode competition. Particle in cell (PIC) simulations show the average output power is 33 W at 0.1 THz, and the beam–wave interaction efficiency is approximately 10%.
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spelling pubmed-69557272020-01-23 Design and Simulation of a Multi-Sheet Beam Terahertz Radiation Source Based on Carbon-Nanotube Cold Cathode Zu, Yifan Yuan, Xuesong Xu, Xiaotao Cole, Matthew T. Zhang, Yu Li, Hailong Yin, Yong Wang, Bin Yan, Yang Nanomaterials (Basel) Article Carbon nanotube (CNT) cold cathodes are proving to be compelling candidates for miniaturized terahertz (THz) vacuum electronic devices (VEDs) owning to their superior field-emission (FE) characteristics. Here, we report on the development of a multi-sheet beam CNT cold cathode electron optical system with concurrently high beam current and high current density. The microscopic FE characteristics of the CNT film emitter is captured through the development of an empirically derived macroscopic simulation model which is used to provide representative emission performance. Through parametrically optimized macroscale simulations, a five-sheet-beam triode electron gun has been designed, and has been shown to emit up to 95 mA at 3.2 kV. Through careful engineering of the electron gun geometric parameters, a low-voltage compact THz radiation source operating in high-order [Formula: see text] mode is investigated to improve output power and suppress mode competition. Particle in cell (PIC) simulations show the average output power is 33 W at 0.1 THz, and the beam–wave interaction efficiency is approximately 10%. MDPI 2019-12-12 /pmc/articles/PMC6955727/ /pubmed/31842262 http://dx.doi.org/10.3390/nano9121768 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zu, Yifan
Yuan, Xuesong
Xu, Xiaotao
Cole, Matthew T.
Zhang, Yu
Li, Hailong
Yin, Yong
Wang, Bin
Yan, Yang
Design and Simulation of a Multi-Sheet Beam Terahertz Radiation Source Based on Carbon-Nanotube Cold Cathode
title Design and Simulation of a Multi-Sheet Beam Terahertz Radiation Source Based on Carbon-Nanotube Cold Cathode
title_full Design and Simulation of a Multi-Sheet Beam Terahertz Radiation Source Based on Carbon-Nanotube Cold Cathode
title_fullStr Design and Simulation of a Multi-Sheet Beam Terahertz Radiation Source Based on Carbon-Nanotube Cold Cathode
title_full_unstemmed Design and Simulation of a Multi-Sheet Beam Terahertz Radiation Source Based on Carbon-Nanotube Cold Cathode
title_short Design and Simulation of a Multi-Sheet Beam Terahertz Radiation Source Based on Carbon-Nanotube Cold Cathode
title_sort design and simulation of a multi-sheet beam terahertz radiation source based on carbon-nanotube cold cathode
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6955727/
https://www.ncbi.nlm.nih.gov/pubmed/31842262
http://dx.doi.org/10.3390/nano9121768
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