Fundamental and Applied Nano-Electromagnetics II: THz Circuits, Materials, Devices

Author:   Antonio Maffucci ,  Sergey A. Maksimenko
Publisher:   Springer
Edition:   1st ed. 2019
ISBN:  

9789402416862


Pages:   214
Publication Date:   15 June 2019
Format:   Hardback
Availability:   Manufactured on demand   Availability explained
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Fundamental and Applied Nano-Electromagnetics II: THz Circuits, Materials, Devices


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Overview

The increasing prevalence of nanotechnologies has led to the birth of “nanoelectromagnetics,” a novel applied science related to the interaction of electromagnetic radiation with quantum mechanical low-dimensional systems. This book provides an overview of the latest advances in nanoelectromagnetics, and presents contributions from an interdisciplinary community of scientists and technologists involved in this research topic. The aspects covered here range from the synthesis of nanostructures and nanocomposites to their characterization, and from the design of devices and systems to their fabrication. The book also focuses on the novel frontier of terahertz technology, which has been expanded by the impressive strides made in nanotechnology, and presents a comprehensive overview of the: -          synthesis of various nanostructured materials; -          study of their electrical and optical properties; -          use of nano-sized elements and nanostructures as building blocks for devices; -          design and fabrication of nanotechnology devices operating in the THz, IR and optical range. The book introduces the reader to materials like nanocomposites, graphene nanoplatelets, carbon nanotubes, metal nanotubes, and silicon nanostructures; to devices like photonic crystals, microcavities, antennas, and interconnects; and to applications like sensing and imaging, with a special emphasis on the THz frequency range.  

Full Product Details

Author:   Antonio Maffucci ,  Sergey A. Maksimenko
Publisher:   Springer
Imprint:   Springer
Edition:   1st ed. 2019
Weight:   0.506kg
ISBN:  

9789402416862


ISBN 10:   9402416862
Pages:   214
Publication Date:   15 June 2019
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

Electromagnetic Response of Carbon Nanotube-Based Composites; M.V. Shuba.- Electrophysical Properties of Sr2FeMoO6–δ ceramics with dielectric shells; N. Kalanda et al.- Peculiarities of formation and characterization of SiO2/Si ion-track template; E. Kaniukov et al.- Optical and electrical properties of ferric chloride doped graphene; M. Baah, T. Kaplas.- Self-organization of plasmonic nanostructures in pores of silica template for SERS; D. Yakimchuk et al.- Polymer nanocomposites with hybrid fillers as materials with controllable electrodynamics characteristics for microwave devices; L. Matzui et al.- Evolution of structure and magnetic characteristic of template synthesized Ni nanotubes; A.Kozlovskiy et al.- First- and second order light scattering processes in biological photonic nanostructures; G. I. Márk et al.- Prospects for terahertz imaging the human skin cancer with the help of gold-nanoparticles-based terahertz-to-infrared converter; A. Postnikov et al.- Carbon-Based Terahertz Resonant Antennas; A. Maffucci, S.A. Maksimenko.- Terahertz applications of non-simply-connected and helical nanostructures; T.P. Collier et al.

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Author Information

Antonio Maffucci is Professor of Electrical Engineering at the University of Cassino and Southern Lazio, and Research Associate at the Italian National Institute for Nuclear Physics. His research focuses on electromagnetic and circuit modeling, computational electromagnetics, electromagnetic compatibility, nanotechnology. Sergey Maksimenko is Professor at and Director of the Institute for Nuclear Problems, Belarusian State University, Minsk, Belarus. His main research focuses  on the electromagnetic properties of different forms of nanocarbon including carbon nanotubes and graphene, and the design and development of nano-carbon based electromagnetic materials for terahertz and microwave applications.

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