A comparative study of dielectric Materials and metals as Nanoplasmonic waveguides

dc.contributor.authorAzad, Ferdous S.
dc.contributor.authorHossain, Md. Sahabul
dc.contributor.authorAhmed, Mohammed Tanvir
dc.date.accessioned2022-04-25T06:35:36Z
dc.date.available2022-04-25T06:35:36Z
dc.date.issued2015-11-30
dc.descriptionSupervised by Mr. Rakibul Hasan Sagor, Assistant Professor, Department of Electrical and Electronic Engineering, Islamic University of Technology. Gazipur, Bangladeshen_US
dc.description.abstractThe ability of Surface Plasmon Polaritons (SPPs) to overcome the diffraction limit has made it a field of great research interest. It is being predicted that next generation microchips will be produced using plasmonics-electronics hybrid technology. This will solve the RC delay issue of current electronic microchips and scaling issue of conventional integrated photonic devices. However, there are some shortcomings of SPP which are higher losses in the metallic layer and less propagation distance. Using current technology, propagation distance of SPP cannot exceed the benchmark of micrometers. The objective of this thesis is study the power transmission characteristics of different kinds of waveguides for several materials and analyze their performance using the FDTD method. SPP propagation characteristics through different optical nanostructures having different geometries have been investigated to analyze the performance of the materials. Waveguides with different kinds of bends have been investigated and compared with each other to see the effects of these bends on the efficiency of power transmission. All of the simulations have been done for a range of signal wavelength extending beyond the visible light spectrum.en_US
dc.identifier.urihttp://hdl.handle.net/123456789/1401
dc.language.isoenen_US
dc.publisherDepartment of Electrical and Electronic Engineering, Islamic University of Technology (IUT), Board Bazar, Gazipur-1704, Bangladeshen_US
dc.titleA comparative study of dielectric Materials and metals as Nanoplasmonic waveguidesen_US
dc.typeThesisen_US

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