Designs and characterization of switchable microwave electromagnetic bandgap and split-ring resonator structures

The design and characterization of both electromagnetic bandgap (EBG) and inter-coupled split-ring resonator (SRR) structures utilized in microwave frequencies were proposed and studied. A new double-stopband EBG structure with a passband region of 14 to 18 GHz was initially constructed by determini...

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Main Author: Wu, Jay-Hsing, 1979-
Format: Others
Language:en
Published: McGill University 2007
Subjects:
Online Access:http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=103034
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-QMM.1030342014-02-13T04:09:19ZDesigns and characterization of switchable microwave electromagnetic bandgap and split-ring resonator structuresWu, Jay-Hsing, 1979-Strip transmission lines.Photonic crystals.The design and characterization of both electromagnetic bandgap (EBG) and inter-coupled split-ring resonator (SRR) structures utilized in microwave frequencies were proposed and studied. A new double-stopband EBG structure with a passband region of 14 to 18 GHz was initially constructed by determining the critical structural ratios. To reduce the size of EBG structure, a novel tapered array pattern was introduced. The structural period, the number of slot, and the length of slot were examined and a strong correlation was found between the lowpass cutoff frequency and the center slot length. Non-linearly tapered configuration was applied to enhance the filter performance and its size was only 57% of the conventional EBG structure. Inter-coupled SRR was also examined and utilized as a bandpass filter when it is implemented on the microstrip line for the first time. It was found that the proposed structure can provide a fractional bandwidth of over 68% with an insertion loss of 0.81 dB in the passband region with a device size of 15.5 mm.Chemical bath deposited Cadmium Sulfide (CdS) thin film was applied to the microwave structures to construct switchable filters. The illumination-sensitive CdS thin film's sheet resistance has been demonstrated to be able to switch from 300 to 109 O/square. With the proposed "conductive-islands" implementation, switching of EBG structure's transmission coefficient (S21) was achieved from 31.3 dB to 5.6 dB at 13 GHz. The inter-coupled SRR structure also showed a S21 switching response from 19 dB to 1.5 dB at 5 GHz. Therefore, optically controlled microwave filters were successfully constructed and realized.Critical contributions in the field of microwave periodic structures are the characterization and the construction of double-stopband structure, linearly and non-linearly tapered array structures, and inter-coupled SRR structures. Vital characteristics and advantages discovered include wide stopband, reduced size, and large fractional bandwidth. Chemical bath deposited CdS thin films were studied to achieve an ultra low sheet resistance and high photosensitivity. Important applications associated with these structures are microwave lowpass/bandpass filters and optically controlled filters.McGill University2007Electronic Thesis or Dissertationapplication/pdfenalephsysno: 002615157proquestno: AAINR32335Theses scanned by UMI/ProQuest.© Jay-Hsing Wu, 2007Doctor of Philosophy (Department of Electrical and Computer Engineering.) http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=103034
collection NDLTD
language en
format Others
sources NDLTD
topic Strip transmission lines.
Photonic crystals.
spellingShingle Strip transmission lines.
Photonic crystals.
Wu, Jay-Hsing, 1979-
Designs and characterization of switchable microwave electromagnetic bandgap and split-ring resonator structures
description The design and characterization of both electromagnetic bandgap (EBG) and inter-coupled split-ring resonator (SRR) structures utilized in microwave frequencies were proposed and studied. A new double-stopband EBG structure with a passband region of 14 to 18 GHz was initially constructed by determining the critical structural ratios. To reduce the size of EBG structure, a novel tapered array pattern was introduced. The structural period, the number of slot, and the length of slot were examined and a strong correlation was found between the lowpass cutoff frequency and the center slot length. Non-linearly tapered configuration was applied to enhance the filter performance and its size was only 57% of the conventional EBG structure. Inter-coupled SRR was also examined and utilized as a bandpass filter when it is implemented on the microstrip line for the first time. It was found that the proposed structure can provide a fractional bandwidth of over 68% with an insertion loss of 0.81 dB in the passband region with a device size of 15.5 mm. === Chemical bath deposited Cadmium Sulfide (CdS) thin film was applied to the microwave structures to construct switchable filters. The illumination-sensitive CdS thin film's sheet resistance has been demonstrated to be able to switch from 300 to 109 O/square. With the proposed "conductive-islands" implementation, switching of EBG structure's transmission coefficient (S21) was achieved from 31.3 dB to 5.6 dB at 13 GHz. The inter-coupled SRR structure also showed a S21 switching response from 19 dB to 1.5 dB at 5 GHz. Therefore, optically controlled microwave filters were successfully constructed and realized. === Critical contributions in the field of microwave periodic structures are the characterization and the construction of double-stopband structure, linearly and non-linearly tapered array structures, and inter-coupled SRR structures. Vital characteristics and advantages discovered include wide stopband, reduced size, and large fractional bandwidth. Chemical bath deposited CdS thin films were studied to achieve an ultra low sheet resistance and high photosensitivity. Important applications associated with these structures are microwave lowpass/bandpass filters and optically controlled filters.
author Wu, Jay-Hsing, 1979-
author_facet Wu, Jay-Hsing, 1979-
author_sort Wu, Jay-Hsing, 1979-
title Designs and characterization of switchable microwave electromagnetic bandgap and split-ring resonator structures
title_short Designs and characterization of switchable microwave electromagnetic bandgap and split-ring resonator structures
title_full Designs and characterization of switchable microwave electromagnetic bandgap and split-ring resonator structures
title_fullStr Designs and characterization of switchable microwave electromagnetic bandgap and split-ring resonator structures
title_full_unstemmed Designs and characterization of switchable microwave electromagnetic bandgap and split-ring resonator structures
title_sort designs and characterization of switchable microwave electromagnetic bandgap and split-ring resonator structures
publisher McGill University
publishDate 2007
url http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=103034
work_keys_str_mv AT wujayhsing1979 designsandcharacterizationofswitchablemicrowaveelectromagneticbandgapandsplitringresonatorstructures
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