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Development of Chiral Plasmonic Devices and Advanced Deposition Techniques with Focused Charged Particle Beams

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Development of Chiral Plasmonic Devices and Advanced Deposition Techniques with Focused Charged Particle Beams (Volumen 82) (Tienda española)

Aleksei Tsarapkin (Autor)

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This work focuses on chiral plasmonic structures for controlling the polarization of light on the nanoscale. Plasmonics is beneficial for this purpose; at its foundation are collective electron oscillations that can couple with light and concentrate it below the diffraction limit. Recent advances in direct writing with focused electron and ion beams allow for the precise fabrication of three-dimensional plasmonic structures.

First, plasmonic double helices are presented as broadband antennas for circularly polarized light. They exhibit a strong chiroptical interaction with a high dissymmetry factor in the visible range as well as directional emission and are also suitable for coupling to quantum emitters. Subsequently, a novel polarization transducer is described: A plasmonic two-wire line coupled to a double-helix antenna via an adiabatic transition region. This device converts linear polarization to circular polarization and offers a compact, on-chip alternative to traditional optical components. Additionally, a maskless technique was developed for area-selective gold deposition. Electron beam-induced dissociation of a gold compound creates an autocatalytically active gold seed layer that enables gold growth at low temperatures on complex topographies. Additionally, this effect enables precise measurement of local temperature changes via 3D electron beam writing. Thus, this work combines plasmonics and materials science, demonstrating its potential for miniaturized photonic systems.

ISBN-10 (Impresion) 9783689526641
ISBN-13 (E-Book) 9783689526658
DOI 10.61061/ISBN_9783689526641
Formato A5
Idioma Inglés
Numero de paginas 162
Laminacion de la cubierta mate
Edicion 1
Serie Innovationen mit Mikrowellen und Licht. Forschungsberichte aus dem Ferdinand-Braun-Institut, Leibniz-Institut für Höchstfrequenztechnik
Volumen 82
Lugar de publicacion Göttingen
Fecha de publicacion 03.08.2026
Clasificacion simple Tesis doctoral
Area Física
Palabras claves Plasmonik, Gold, Helix-Antenne, Fokussierte Elektronenstrahlinduzierte Abscheidungen, Chiroptische Wechselwirkung, Zirkulardichroismus, Flächenselektive Chemische Gasphasenabscheidungen, Autokatalytisches Wachstum, Strahlinduzierte Erwärmung, Direktes Elektronenstrahlscheiben