Amin Kianinejad Kianinejad Metamaterial Surface Plasmon-Based Transmission Lines and Antennas

Metamaterial Surface Plasmon-Based Transmission Lines and Antennas

von Amin Kianinejad

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Beschreibung

This thesis proposes a reliable and repeatable method for implementing Spoof Surface Plasmon (SSP) modes in the design of various circuit components. It also presents the first equivalent circuit model for plasmonic structures, which serves as an insightful guide to designing SSP-based circuits. Today, electronic circuits and systems are developing rapidly and becoming an indispensable part of our daily life; however the issue of compactness in integrated circuits remains a formidable challenge. Recently, the Spoof Surface Plasmon (SSP) modes have been proposed as a novel platform for highly compact electronic circuits. Despite extensive research efforts in this area, there is still an urgent need for a systematic design method for plasmonic circuits. In this thesis, different SSP-based transmission lines, antenna feeding networks and antennas are designed and experimentally evaluated. With their high field confinement, the SSPs do not suffer from the compactness limitations of traditional circuits and are capable of providing an alternative platform for the future generation of electronic circuits and electromagnetic systems.


This thesis proposes a reliable and repeatable method for implementing Spoof Surface Plasmon (SSP) modes in the design of various circuit components. It also presents the first equivalent circuit model for plasmonic structures, which serves as an insightful guide to designing SSP-based circuits. Today, electronic circuits and systems are developing rapidly and becoming an indispensable part of our daily life; however the issue of compactness in integrated circuits remains a formidable challenge. Recently, the Spoof Surface Plasmon (SSP) modes have been proposed as a novel platform for highly compact electronic circuits. Despite extensive research efforts in this area, there is still an urgent need for a systematic design method for plasmonic circuits. In this thesis, different SSP-based transmission lines, antenna feeding networks and antennas are designed and experimentally evaluated. With their high field confinement, the SSPs do not suffer from the compactness limitations of traditional circuits and are capable of providing an alternative platform for the future generation of electronic circuits and electromagnetic systems.


Proposes a reliable and repeatable method for implementing spoof surface plasmon (SSP) modes in the design of various circuit components Presents an equivalent circuit model for plasmonic structures, which serves as a guide to designing SSP-based circuits Discusses both theoretical and practical aspects of the implementation of the SSP modes in microwave circuits to enable the design of SSP-based circuit components

Autor*in

Amin Kianinejad

Themen in »Metamaterial Surface Plasmon-Based Transmission Lines and Antennas«

Microwave Circuits Spoof Surface Plasmon (SSP) Single-Layered Leaky-Wave Antenna (SL-LWA) Dielectric Resonator Antennas (DRA) Slow Wave Transmission-Lines (SW-TL) Spoof Surface Plasmon Circuit Component Design Plasmonic Structures Spoof Surface Plasmon Cells Spoof Surface Plasmon Transmission Lines Spoof Surface Plasmon Antenna Design information and communication, circuits

Stimmen zu »Metamaterial Surface Plasmon-Based Transmission Lines and Antennas«

Details

ISBN: 9789811083754
Verlag: Springer Singapore
Erscheinung: 30.03.2018

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