Rodyti trumpą aprašą

dc.contributor.authorGric, Tatjana
dc.contributor.authorGorodetsky, Andrei
dc.contributor.authorTrofimov, Aleksej
dc.contributor.authorRafilov, Edik
dc.date.accessioned2023-09-18T17:16:45Z
dc.date.available2023-09-18T17:16:45Z
dc.date.issued2018
dc.identifier.issn1866-6892
dc.identifier.urihttps://etalpykla.vilniustech.lt/handle/123456789/121235
dc.description.abstractHerein, we numerically investigate terahertz photoconductive antennas (PCAs) based on optimized plasmonic nanostructures and absorption enhancement in nanocylinders. Plasmonic behavior in the visible to near-infrared light spectrum is achievable due to the metallic nanostructure employment. Herein, we study the absorption enhancement of silver and transparent-conducting oxides (TCO) nanocylinders with different diameters by means of effective medium approximation. This study also reports on the stronger enhancement in the case of TCO nanocylinders. The results show that resonant absorption amplitude and wavelength are dramatically affected by the thickness of the nanostructure as well as by the distances between nanocylinders. The outputs reported here provide a fertile ground for precise control of the nanowire structures for sensing and other enhanced optical applications. It is worthwhile noting that in case of TCO nanocylinders, absorption enhancement for NIR wavelengths, being relevant for present terahertz generation setup, reaches up to fivefold leading to 25-fold increase in terahertz radiation.eng
dc.formatPDF
dc.format.extentp. 1028-1038
dc.format.mediumtekstas / txt
dc.language.isoeng
dc.relation.isreferencedbyCurrent Contents / Engineering, Computing & Technology
dc.relation.isreferencedbyScience Citation Index Expanded (Web of Science)
dc.relation.isreferencedbyScopus
dc.relation.isreferencedbyAcademic OneFile
dc.relation.isreferencedbyGale’s Academic Databases
dc.relation.isreferencedbyOCLC Article First
dc.relation.isreferencedbyProQuest Central
dc.relation.isreferencedbyEI Compendex Plus
dc.source.urihttps://doi.org/10.1007/s10762-018-0516-0
dc.titleTunable plasmonic properties and absorption enhancement in terahertz photoconductive antenna based on optimized plasmonic nanostructures
dc.typeStraipsnis Web of Science DB / Article in Web of Science DB
dcterms.references43
dc.type.pubtypeS1 - Straipsnis Web of Science DB / Web of Science DB article
dc.contributor.institutionVilniaus Gedimino technikos universitetas Valstybinis mokslinių tyrimų institutas Fizinių ir technologijos mokslų centras
dc.contributor.institutionITMO University, St. Petersburg Imperial College London
dc.contributor.institutionVilniaus Gedimino technikos universitetas
dc.contributor.institutionAston University
dc.contributor.facultyElektronikos fakultetas / Faculty of Electronics
dc.subject.researchfieldT 001 - Elektros ir elektronikos inžinerija / Electrical and electronic engineering
dc.subject.vgtuprioritizedfieldsFM0101 - Fizinių, technologinių ir ekonominių procesų matematiniai modeliai / Mathematical models of physical, technological and economic processes
dc.subject.ltspecializationsL104 - Nauji gamybos procesai, medžiagos ir technologijos / New production processes, materials and technologies
dc.subject.enabsorption
dc.subject.enterahertz photoconductive antenna
dc.subject.ennanostructure
dc.subject.enmetamaterial
dcterms.sourcetitleJournal of infrared, millimeter, and terahertz waves
dc.description.issueiss. 10
dc.description.volumevol. 39
dc.publisher.nameSpringer
dc.publisher.cityNew York
dc.identifier.doi000443406100009
dc.identifier.doi2-s2.0-85049146679
dc.identifier.doi10.1007/s10762-018-0516-0
dc.identifier.elaba29757926


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Rodyti trumpą aprašą