Angle-Resolved Spectroscopy of Resonant Nanostructures: Metasurface Fabrication and Dipolar Orientation Analysis

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dc.contributor.advisor Fleischer, Monika (Prof. Dr.)
dc.contributor.author Simo, Peter Christian
dc.date.accessioned 2026-10-07T15:40:15Z
dc.date.available 2026-10-07T15:40:15Z
dc.date.issued 2027-09-21
dc.identifier.uri http://hdl.handle.net/10900/184145
dc.identifier.uri http://nbn-resolving.org/urn:nbn:de:bsz:21-dspace-1841453 de_DE
dc.identifier.uri http://dx.doi.org/10.15496/publikation-125458
dc.description.abstract Two topics are researched in this thesis, which heavily rely on the angular analysis of plasmonic optical responses. The first major section highlights the fabrication and analysis of nanopyramids using nanosphere lithography and electron beam lithography, showing how various nanopyramid shapes influence resulting plasmonic modes. Simulations and multipole decomposition analysis reveal that 3D stand-alone nanopyramids support complex radiation patterns which are successfully decoded. Arranged in a 2D hexagonal grating while being connected by a continuous gold film, they additionally support photonic states such as surface lattice resonances and surface plasmons. The resulting metasurfaces exhibit narrow surface lattice resonance linewidths, as well as Rayleigh anomaly surface plasmon modes, enabling enhanced scattering and Raman signal applications. In the second section, a new and non-destructive spectropolarimetric method is developed to accurately determine the azimuthal orientation of dipole moments in plasmonic nanostructures, regardless of aspect ratio or asymmetry. Using a minimal number of spectra, theoretical modeling, and advanced computation including assistance from machine learning algorithms, this robust approach reliably extracts dipole orientations without damaging the inspected samples. The technique is broadly applicable, from chiroptical spectroscopy to metasurface research and precision 2D material stacking. en
dc.description.abstract Dissertation ist gesperrt bis 21. September 2027 ! de_DE
dc.language.iso en de_DE
dc.publisher Universität Tübingen de_DE
dc.publisher Universität Tübingen de_DE
dc.rights ubt-podno de_DE
dc.rights.uri http://tobias-lib.uni-tuebingen.de/doku/lic_ohne_pod.php?la=de de_DE
dc.rights.uri http://tobias-lib.uni-tuebingen.de/doku/lic_ohne_pod.php?la=en en
dc.subject.ddc 530 de_DE
dc.subject.other plasmonics en
dc.subject.other spectroscopy en
dc.subject.other nanoparticles en
dc.subject.other spectropolarimetry en
dc.subject.other nanofabrication en
dc.subject.other machine learning en
dc.title Angle-Resolved Spectroscopy of Resonant Nanostructures: Metasurface Fabrication and Dipolar Orientation Analysis en
dc.type PhDThesis de_DE
dcterms.dateAccepted 2026-09-21
utue.publikation.fachbereich Physik de_DE
utue.publikation.fakultaet 7 Mathematisch-Naturwissenschaftliche Fakultät de_DE
utue.publikation.noppn yes de_DE

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