Graphene based surface Plasmon polariton for plasmonic waveguide and devices

This thesis is submitted in partial fulfillment of the requirements for the degree of Bachelor of Science in Electrical and Electronic Engineering, 2020.

Bibliografische gegevens
Hoofdauteurs: Nur, Salman Sadat, Zaman, Kashpia, Sarker, Md. Ashaduzzaman, Zarif, Abrar
Andere auteurs: Mohsin, Abu S.M.
Formaat: Thesis
Taal:en_US
Gepubliceerd in: Brac University 2021
Onderwerpen:
Online toegang:http://hdl.handle.net/10361/14425
id 10361-14425
record_format dspace
spelling 10361-144252021-05-24T21:01:20Z Graphene based surface Plasmon polariton for plasmonic waveguide and devices Nur, Salman Sadat Zaman, Kashpia Sarker, Md. Ashaduzzaman Zarif, Abrar Mohsin, Abu S.M. Department of Electrical and Electronic Engineering, Brac University Graphene Surface plasmon Surface conductivity Waveguide Absorption Modulator SPP This thesis is submitted in partial fulfillment of the requirements for the degree of Bachelor of Science in Electrical and Electronic Engineering, 2020. Cataloged from PDF version of thesis. Includes bibliographical references (pages 65-68). 2D graphene was first discovered in 2004 and then it has gained admiration within scientific community due to its extraordinary electrical, mechanical, chemical and optical property. In this study, first we investigated the surface conductivity material model for graphene where we have found out that it is very much useful to characterize graphene modeling using a surface conductivity, which would help us to model graphene for other simulation. Then we demonstrated surface plasmon polarization for plasmonic waveguide and devices. Moreover, we showed optical absorption of a monolayer graphene and demonstrated maximum absorption rate of periodically patterned graphene. Then finally, using all these we designed an electro-optical modulator (EOM) and waveguides and devices based on graphene coated waveguide where we modulate the transmission and absorption rate of the modulator. To do these experiments, we performed extensive numerical simulation using Lumerical FDTD, MODE, DEVICE solver based Lumerical software and verified the numerical results with available analytical analysis Salman Sadat Nur Kashpia Zaman Md. Ashaduzzaman Sarker Abrar Zarif B. Electrical and Electronic Engineering 2021-05-24T06:41:23Z 2021-05-24T06:41:23Z 2020 2020-09 Thesis ID: 12221104 ID: 6121047 ID: 17121058 ID: 17121029 http://hdl.handle.net/10361/14425 en_US Brac University theses are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission. 68 pages application/pdf Brac University
institution Brac University
collection Institutional Repository
language en_US
topic Graphene
Surface plasmon
Surface conductivity
Waveguide
Absorption
Modulator
SPP
spellingShingle Graphene
Surface plasmon
Surface conductivity
Waveguide
Absorption
Modulator
SPP
Nur, Salman Sadat
Zaman, Kashpia
Sarker, Md. Ashaduzzaman
Zarif, Abrar
Graphene based surface Plasmon polariton for plasmonic waveguide and devices
description This thesis is submitted in partial fulfillment of the requirements for the degree of Bachelor of Science in Electrical and Electronic Engineering, 2020.
author2 Mohsin, Abu S.M.
author_facet Mohsin, Abu S.M.
Nur, Salman Sadat
Zaman, Kashpia
Sarker, Md. Ashaduzzaman
Zarif, Abrar
format Thesis
author Nur, Salman Sadat
Zaman, Kashpia
Sarker, Md. Ashaduzzaman
Zarif, Abrar
author_sort Nur, Salman Sadat
title Graphene based surface Plasmon polariton for plasmonic waveguide and devices
title_short Graphene based surface Plasmon polariton for plasmonic waveguide and devices
title_full Graphene based surface Plasmon polariton for plasmonic waveguide and devices
title_fullStr Graphene based surface Plasmon polariton for plasmonic waveguide and devices
title_full_unstemmed Graphene based surface Plasmon polariton for plasmonic waveguide and devices
title_sort graphene based surface plasmon polariton for plasmonic waveguide and devices
publisher Brac University
publishDate 2021
url http://hdl.handle.net/10361/14425
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AT zamankashpia graphenebasedsurfaceplasmonpolaritonforplasmonicwaveguideanddevices
AT sarkermdashaduzzaman graphenebasedsurfaceplasmonpolaritonforplasmonicwaveguideanddevices
AT zarifabrar graphenebasedsurfaceplasmonpolaritonforplasmonicwaveguideanddevices
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