A Novel THz Photoconductive Source and Waveguide Based on One-dimensional Nano-grating

A terahertz photoconductive source structure with nano-grating electrodes is proposed. The resonance modes of the one-dimensional nano-grating and their affect the optical power absorption are studied. In addition, an approach for optimal design of the grating to maximize the photocurrent for differ...

Full description

Bibliographic Details
Main Author: Jafarlou, Saman
Language:en
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/10012/7269
id ndltd-LACETR-oai-collectionscanada.gc.ca-OWTU.10012-7269
record_format oai_dc
spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OWTU.10012-72692013-10-04T04:11:55ZJafarlou, Saman2013-01-25T15:02:18Z2013-01-25T15:02:18Z2013-01-25T15:02:18Z2013http://hdl.handle.net/10012/7269A terahertz photoconductive source structure with nano-grating electrodes is proposed. The resonance modes of the one-dimensional nano-grating and their affect the optical power absorption are studied. In addition, an approach for optimal design of the grating to maximize the photocurrent for different proposed DC biases, is presented. The dependence of the photocurrent on physical parameters of photomixer are analyzed. A fast analysis method for a new terahertz waveguide for photo-mixing is proposed. The wave-guiding mixer structure is a modified parallel plate waveguide (PPWG) in which the top plate is replaced by a periodic array of sub-wavelength nano-slits. The substrate of the PPWG is made of a fast photoconductive material in which laser photomixing/absorption occurs. The characteristic equation of the modified PPWG when used as a THz waveguide is derived analytically, and its guided modes are studied in details over THz range of frequencies. The accuracy of the analytical results are verified by comparison with full-wave numerical simulations. The criteria for choosing the suitable mode for photomixing application are also discussed. Finally, based on dyadic Green’s function representation, a systematic approach is provided for calculating the amplitude of the guided modes that are excited by an arbitrary photocurrent.enterahertzphotomixerPlasmonicNano-gratingExtraordinary optical transmissionwaveguideA Novel THz Photoconductive Source and Waveguide Based on One-dimensional Nano-gratingThesis or DissertationElectrical and Computer EngineeringMaster of Applied ScienceElectrical and Computer Engineering
collection NDLTD
language en
sources NDLTD
topic terahertz
photomixer
Plasmonic
Nano-grating
Extraordinary optical transmission
waveguide
Electrical and Computer Engineering
spellingShingle terahertz
photomixer
Plasmonic
Nano-grating
Extraordinary optical transmission
waveguide
Electrical and Computer Engineering
Jafarlou, Saman
A Novel THz Photoconductive Source and Waveguide Based on One-dimensional Nano-grating
description A terahertz photoconductive source structure with nano-grating electrodes is proposed. The resonance modes of the one-dimensional nano-grating and their affect the optical power absorption are studied. In addition, an approach for optimal design of the grating to maximize the photocurrent for different proposed DC biases, is presented. The dependence of the photocurrent on physical parameters of photomixer are analyzed. A fast analysis method for a new terahertz waveguide for photo-mixing is proposed. The wave-guiding mixer structure is a modified parallel plate waveguide (PPWG) in which the top plate is replaced by a periodic array of sub-wavelength nano-slits. The substrate of the PPWG is made of a fast photoconductive material in which laser photomixing/absorption occurs. The characteristic equation of the modified PPWG when used as a THz waveguide is derived analytically, and its guided modes are studied in details over THz range of frequencies. The accuracy of the analytical results are verified by comparison with full-wave numerical simulations. The criteria for choosing the suitable mode for photomixing application are also discussed. Finally, based on dyadic Green’s function representation, a systematic approach is provided for calculating the amplitude of the guided modes that are excited by an arbitrary photocurrent.
author Jafarlou, Saman
author_facet Jafarlou, Saman
author_sort Jafarlou, Saman
title A Novel THz Photoconductive Source and Waveguide Based on One-dimensional Nano-grating
title_short A Novel THz Photoconductive Source and Waveguide Based on One-dimensional Nano-grating
title_full A Novel THz Photoconductive Source and Waveguide Based on One-dimensional Nano-grating
title_fullStr A Novel THz Photoconductive Source and Waveguide Based on One-dimensional Nano-grating
title_full_unstemmed A Novel THz Photoconductive Source and Waveguide Based on One-dimensional Nano-grating
title_sort novel thz photoconductive source and waveguide based on one-dimensional nano-grating
publishDate 2013
url http://hdl.handle.net/10012/7269
work_keys_str_mv AT jafarlousaman anovelthzphotoconductivesourceandwaveguidebasedononedimensionalnanograting
AT jafarlousaman novelthzphotoconductivesourceandwaveguidebasedononedimensionalnanograting
_version_ 1716601013949956096