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Please use this identifier to cite or link to this item: http://hdl.handle.net/11375/12683
Title: DESIGN OPTIMIZATION AND MODELING OF PLASMONIC STRUCTURES
Authors: El, Sherif H Mohamed
Advisor: Bakr, Mohamed H.
Department: Electrical and Computer Engineering
Keywords: Plasmonics;Surface Plasmons;Optimization;Multilevel;3-D chips;Slit array;Rotator;Electromagnetics and photonics;Optics;Electromagnetics and photonics
Publication Date: Oct-2012
Abstract: <p>In this thesis, we discuss the study and realization of surface plasmon polaritons (SPPs) and their devices. Plasmonics is the emerging field that will help technologies advance further into the nano-scale without the concern for delays or size limitations. SPPs are a more advanced field of photonics as they use metals instead of the semiconductors or insulators used in optics. They operate at frequencies in the light and near infrared spectrum, as this range produces their unique characteristics. Plasmonics possess the miniaturization of electronics and the speed of photonics. They do not suffer from both the delays in nano-electronics, and the size limitations faced in optics. In this thesis, we present the optimization of plasmonic slit arrays by designing the parabolic phase profile of the array. Moreover, we present a novel multilevel plasmonic coupler that will aid in the realization of 3-D plasmonic chips, as well as quadrature modulation. The theory, procedures, and results are all presented and discussed.</p>
URI: http://hdl.handle.net/11375/12683
Identifier: opendissertations/7548
8153
3020474
Appears in Collections:Open Access Dissertations and Theses

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