Metamaterials as broadband absorbers, tunable color filters, and multi-functional metasurfaces

buir.advisorÖzbay, Ekmel
dc.contributor.authorAalizadeh, Majid
dc.date.accessioned2019-08-08T06:14:45Z
dc.date.available2019-08-08T06:14:45Z
dc.date.copyright2019-06
dc.date.issued2019-06
dc.date.submitted2019-07-09
dc.descriptionCataloged from PDF version of article.en_US
dc.descriptionThesis (M.S.) : Bilkent University, Department of Electrical and Electronics Engineering, İhsan Doğramacı Bilkent University, 2019.en_US
dc.descriptionIncludes bibliographical references (leaves 104-123).en_US
dc.description.abstractMetamaterials have enabled us to come up with artificial structures and designs that can perform optical functionalities which are not achievable with natural materials. Here we design and implement three important applications of metamaterials as: 1. Ultra-broadband absorbers, 2. Real-time tunable color filters, and 3. Wideband and wide-angle efficient beam deflector and Multi-functional angular filter. By lithogra-phy being a major hinder on the way to mass production and cost-effectiveness, most of our works are lithography-free. We have introduced Manganese (Mn) for the first time as a very promising metal for broadband absorption and have used it in all our works. Four different Mn-based broadband absorbers are designed and fabricated in different chapters. Mn is used in the Metal-Insulator-Metal (MIM) cavity, annealed MIM configuration, top-layer-patterned MIM configuration, and random nanopyra-mids. It is shown in all works that Mn has a much better performance compared to other metals. For instance, in the work based on random nanopyramids, we obtain ultraviolet (UV) to far-infrared (FIR) perfect absorption by exploiting a lithography-free method and only by coating a single Mn layer on a high-roughness substrate. Moreover, using the combination of the MIM cavity and an electro-optic material, we have shown that a lithography-free color filter can be achieved that covers the whole visible spectrum by changing the voltage from -12 to 12 volts. Finally, in a structure composed of Silicon nano-rods, an ultra-wideband and wide-angle highly-efficient beam deflection is obtained. What makes the same structure very promising is that it also has multifunctional applications as band-pass, band-stop, and low-pass angular filter.en_US
dc.description.provenanceSubmitted by Betül Özen (ozen@bilkent.edu.tr) on 2019-08-08T06:14:45Z No. of bitstreams: 1 MS Thesis _ Majid Aalizadeh.pdf: 5334868 bytes, checksum: 4342c8740d2c0d6b1b88736d2b3aa30d (MD5)en
dc.description.provenanceMade available in DSpace on 2019-08-08T06:14:45Z (GMT). No. of bitstreams: 1 MS Thesis _ Majid Aalizadeh.pdf: 5334868 bytes, checksum: 4342c8740d2c0d6b1b88736d2b3aa30d (MD5) Previous issue date: 2019-07en
dc.description.statementofresponsibilityby Majid Aalizadehen_US
dc.embargo.release2020-01-08
dc.format.extentxx, 125 leaves : illustrations (some color), charts (some color) ; 30 cm.en_US
dc.identifier.itemidB152442
dc.identifier.urihttp://hdl.handle.net/11693/52314
dc.language.isoEnglishen_US
dc.rightsinfo:eu-repo/semantics/openAccessen_US
dc.subjectBroadband absorbersen_US
dc.subjectManganeseen_US
dc.subjectElectrically tunableen_US
dc.subjectBeam deflectionen_US
dc.subjectAnd angular filteringen_US
dc.titleMetamaterials as broadband absorbers, tunable color filters, and multi-functional metasurfacesen_US
dc.title.alternativeGenişbant emiciler, ayarlanabilir renk filtreleri, ve çok işlevli metayüzeyler olarak metamalzemeleren_US
dc.typeThesisen_US
thesis.degree.disciplineElectrical and Electronic Engineering
thesis.degree.grantorBilkent University
thesis.degree.levelMaster's
thesis.degree.nameMS (Master of Science)

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