Perspectives on Nanotechnology for RF and Terahertz Electronics

Nanotechnology is key to the 21st Century, involving all aspects of nanoscale science and technology and generating a paradigm shift in diverse areas of physics, chemistry, electronics, materials, engineering, and even medicine and biology, as a result of its interdisciplinary nature. RF and teraher...

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Main Authors: Cha, S, Choi, J, Baik, C, Sohn, H, Kim, O, Kim, J
Format: Journal article
Language:English
Published: 2011
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author Cha, S
Choi, J
Baik, C
Sohn, H
Choi, J
Kim, O
Kim, J
author_facet Cha, S
Choi, J
Baik, C
Sohn, H
Choi, J
Kim, O
Kim, J
author_sort Cha, S
collection OXFORD
description Nanotechnology is key to the 21st Century, involving all aspects of nanoscale science and technology and generating a paradigm shift in diverse areas of physics, chemistry, electronics, materials, engineering, and even medicine and biology, as a result of its interdisciplinary nature. RF and terahertz electronics are among the fastest growing areas as a result of the discovery, fabrication, and investigation of nanomaterials, in particular carbon nanotubes, graphenes, and compound semiconductors. These advances in nanotechnology have led to the development of nano RF or terahertz devices, which are capable of transcending conventional devices in their compactness, efficiency, performance, and operating frequency. This paper sets out the evolution of nanotechnology in RF and terahertz electronics in which a challenge awaits for the microwave science and engineering research community. © 1963-2012 IEEE.
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spelling oxford-uuid:dcd70767-d282-4f49-bf47-12214f5fc91b2022-03-27T09:20:39ZPerspectives on Nanotechnology for RF and Terahertz ElectronicsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:dcd70767-d282-4f49-bf47-12214f5fc91bEnglishSymplectic Elements at Oxford2011Cha, SChoi, JBaik, CSohn, HChoi, JKim, OKim, JNanotechnology is key to the 21st Century, involving all aspects of nanoscale science and technology and generating a paradigm shift in diverse areas of physics, chemistry, electronics, materials, engineering, and even medicine and biology, as a result of its interdisciplinary nature. RF and terahertz electronics are among the fastest growing areas as a result of the discovery, fabrication, and investigation of nanomaterials, in particular carbon nanotubes, graphenes, and compound semiconductors. These advances in nanotechnology have led to the development of nano RF or terahertz devices, which are capable of transcending conventional devices in their compactness, efficiency, performance, and operating frequency. This paper sets out the evolution of nanotechnology in RF and terahertz electronics in which a challenge awaits for the microwave science and engineering research community. © 1963-2012 IEEE.
spellingShingle Cha, S
Choi, J
Baik, C
Sohn, H
Choi, J
Kim, O
Kim, J
Perspectives on Nanotechnology for RF and Terahertz Electronics
title Perspectives on Nanotechnology for RF and Terahertz Electronics
title_full Perspectives on Nanotechnology for RF and Terahertz Electronics
title_fullStr Perspectives on Nanotechnology for RF and Terahertz Electronics
title_full_unstemmed Perspectives on Nanotechnology for RF and Terahertz Electronics
title_short Perspectives on Nanotechnology for RF and Terahertz Electronics
title_sort perspectives on nanotechnology for rf and terahertz electronics
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