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dc.contributor.authorBingham, Adam
dc.contributor.authorZhao, Yuguang
dc.contributor.authorGrischkowsky, D.
dc.date.accessioned2015-10-16T20:48:14Z
dc.date.available2015-10-16T20:48:14Z
dc.date.issued2005-07-26
dc.identifierokds_Grischkowsky_APL_2005-07-26
dc.identifier.citationBingham, A., Zhao, Y., & Grischkowsky, D. (2005). THz parallel plate photonic waveguides. Applied Physics Letters, 87(5), Article 051101. https://doi.org/10.1063/1.1997273
dc.identifier.urihttps://hdl.handle.net/11244/19879
dc.description.abstractWe have observed narrowband transmission or rejection in the frequency spectra of THz pulses transmitted through air-spaced parallel plate photonic waveguides. These waveguides have one of the metal plates covered by a silicon plate with a metallic photonic band gap (PBG) surface precisely fabricated by lithographic techniques. We use two different PBG surface types: an array of metallic cylindrical pillars, and an array of metallic cylindrical holes. With the inversion of the PBG structures from cylinders to holes, the output spectra changes from narrow bandpass to narrow band-reject filtering. These photonic waveguides show extremely sharp spectral responses in regions as large as 1 THz, with stop bands or transmission bands having contrasts of as much as 90 dB.
dc.formatapplication/pdf
dc.languageen_US
dc.publisherAIP Publishing
dc.rightsThis material has been previously published. In the Oklahoma State University Library's institutional repository this version is made available through the open access principles and the terms of agreement/consent between the author(s) and the publisher. The permission policy on the use, reproduction or distribution of the material falls under fair use for educational, scholarship, and research purposes. Contact Digital Resources and Discovery Services at lib-dls@okstate.edu or 405-744-9161 for further information.
dc.titleTHz parallel plate photonic waveguides
osu.filenameokds_Grischkowsky_APL_2005-07-26.pdf
dc.description.peerreviewPeer reviewed
dc.identifier.doi10.1063/1.1997273
dc.description.departmentElectrical and Computer Engineering
dc.type.genreArticle
dc.type.materialText
dc.subject.keywordsthz waveguides
dc.subject.keywordsparallel plate waveguides
dc.subject.keywordsphotonic waveguides
dc.subject.keywordsnarrowband transmission
dc.subject.keywordsarrowband rejection
dc.subject.keywordsthz pulse transmission
dc.subject.keywordsair-spaced waveguides
dc.subject.keywordsmetal plates
dc.subject.keywordssilicon plate
dc.subject.keywordsmetallic surface
dc.subject.keywordsphotonic band gap
dc.subject.keywordslithographic techniques
dc.subject.keywordspbg surface types
dc.subject.keywordsmetallic cylindrical pillar array
dc.subject.keywordsmetallic cylindrical hole array
dc.subject.keywordspbg structure inversion
dc.subject.keywordsnarrow bandpass filtering
dc.subject.keywordsnarrow band-reject filtering
dc.subject.keywordssharp spectral responses
dc.subject.keywordsstop bands
dc.subject.keywordstransmission bands
dc.subject.keywords1 thz


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