Please use this identifier to cite or link to this item: https://doi.org/10.1109/JSTQE.2005.845619
DC FieldValue
dc.titleAnalysis of finite-size coated electromagnetic bandgap structure by an efficient scattering matrix method
dc.contributor.authorLi, E.-P.
dc.contributor.authorWang, Q.-X.
dc.contributor.authorZhang, Y.-J.
dc.contributor.authorOoi, B.-L.
dc.date.accessioned2014-06-17T02:38:56Z
dc.date.available2014-06-17T02:38:56Z
dc.date.issued2005-03
dc.identifier.citationLi, E.-P., Wang, Q.-X., Zhang, Y.-J., Ooi, B.-L. (2005-03). Analysis of finite-size coated electromagnetic bandgap structure by an efficient scattering matrix method. IEEE Journal on Selected Topics in Quantum Electronics 11 (2) : 485-492. ScholarBank@NUS Repository. https://doi.org/10.1109/JSTQE.2005.845619
dc.identifier.issn1077260X
dc.identifier.urihttp://scholarbank.nus.edu.sg/handle/10635/55079
dc.description.abstractThis paper presents an efficient simulation algorithm-Scattering matrix method for investigation of the coated finite two-dimensional electromagnetic bandgap (EBG) structures. The method is derived to be capable to simulate the band properties of the coated cylinder photonic crystal with wave discontinuities. Numbers of photonic crystals with waveguide discontinuities are examined. The transmission characteristics of the EBG embedded with metal, dielectric, and various coated cylinders are analyzed. The results show that the tuned bandgap properties are able to provide an additional possibility to develop a novel device. © 2005 IEEE.
dc.description.urihttp://libproxy1.nus.edu.sg/login?url=http://dx.doi.org/10.1109/JSTQE.2005.845619
dc.sourceScopus
dc.subjectCoated electromagnetic bandgap
dc.subjectEfficient scattering matrix method
dc.subjectPhotonic bandgap
dc.typeArticle
dc.contributor.departmentELECTRICAL & COMPUTER ENGINEERING
dc.description.doi10.1109/JSTQE.2005.845619
dc.description.sourcetitleIEEE Journal on Selected Topics in Quantum Electronics
dc.description.volume11
dc.description.issue2
dc.description.page485-492
dc.description.codenIJSQE
dc.identifier.isiut000228938900025
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