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dc.contributor.authorNegara, Teguh P.
dc.contributor.authorMardanih
dc.contributor.authorHardhienata, Hendradi
dc.contributor.authorAlatas, Husin
dc.date.accessioned2012-12-06T03:51:19Z
dc.date.available2012-12-06T03:51:19Z
dc.date.issued2011
dc.identifier.urihttp://repository.ipb.ac.id/handle/123456789/58736
dc.description.abstractIn this paper we report the results of our systematic numerical study on the characteristics of a-metal-dielectric-metal slab waveguide with an embedded ID metallodielectric photonic crystal using finite difference time domain method. At low teraherz (THz) optical frequency, the result show that the sensitivity of the device depends significantly on the shape of the corresponding dielectric rod, which acts as a defect, and the distance between the two metallic rods. In this simulation, the optimum device sensitivity is obtained for a round shaped defect with a radius of 0.28 mm lattice constant of 0.35 mm and operational frequency of 2.69 THz which lies in the range of biomolecule vibrational mode.en
dc.publisherIndonesian Journal of Physics
dc.subjectMetal-Dielectric-Metal Slab Waveguideen
dc.subjectOne-Dimensional Metallodielectric Photonic Crystalen
dc.subjectFDTD methoden
dc.subjectTHz Optical Frequencyen
dc.titleCaharacteristics of a Metal-Dielectric-Metal slab waveguide with embedded metallodielectric photonic crystal and its optimization at low THz optical frequencyen
Appears in Collections:Faculty of Mathematics and Natural Sciences

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