Localized optical fields and directional far field emissions from plasmonic nanojunctions

dc.contributor.guideKUMAR, G. V. PAVAN
dc.coverage.spatialNA
dc.creator.researcherDASGUPTA, ARINDAM
dc.date.accessioned2023-02-17T06:54:48Z
dc.date.available2023-02-17T06:54:48Z
dc.date.awarded2016
dc.date.completed2016
dc.date.registered2010
dc.description.abstractThe coupled oscillations of free electrons and the optical waves at the metal dielectricinterfaces are known as surface plasmons This kind of light matter interaction in plasmonicnanostructures has made it possible to realize the concept of optical antennae These are the devices which can work as a transducer between free radiation and localizedsource An optical antenna can be characterized by two main properties a ability to localize optical fields to sub wavelength scales and b the ability to spatiallyredirect the near field emissions Localization of fields is important for obtaining enhancedinteractions with nearby molecules whereas defined directionality is useful toincrease detection efficiency Here in this thesis we will present how the two fundamentalexcitations of surface plasmons i e i localized surface plasmon LSP and ii propagating surface plasmon polaritons SPP can be utilized to obtain field localizationand well defined directional emission at plasmonic nanojunctions which in turn workas optical antennae First we shall present how the LSP mediated field localization at the junction ofa Palladium Pd bridged gold Au nanocylinder dimer can be tuned by varying thegeometrical parameters of the system and how this geometry can be used for efficienthydrogen detection Next we will present how the propagating SPP in silver Ag nanowire NW generateddue to terminal optical excitation of the wire can lead to field localization at aserially coupled Ag NW dimer junction or a NW nanoparticle junction which is spatiallyseparated from the excitation point We will also show that the efficient SPPwaveguiding through the NW results in directional scattering of light at the coupledNW dimer junction Furthermore we will show how these phenomena can be employedto remotely excite molecules placed at the junctions and influence directionalemission from them newline newline
dc.description.noteNA
dc.format.accompanyingmaterialNone
dc.format.dimensionsNA
dc.format.extentNA
dc.identifier.urihttp://hdl.handle.net/10603/459558
dc.languageEnglish
dc.publisher.institutionDepartment of Physics
dc.publisher.placePune
dc.publisher.universityIndian Institute of Science Education and Research (IISER) Pune
dc.relationNA
dc.rightsself
dc.source.universityUniversity
dc.subject.keywordPhysical Sciences
dc.subject.keywordPhysics
dc.subject.keywordPhysics Applied
dc.titleLocalized optical fields and directional far field emissions from plasmonic nanojunctions
dc.title.alternativeNa
dc.type.degreePh.D.

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