Martin, Nicholas (2024) Topological and Symmetry-Broken Nano-Photonic Structures with Embedded Quantum Dots. PhD thesis, University of Sheffield.
Abstract
This thesis explores directional light–matter interactions and mode manipulation in quantum photonic circuits, focusing on photonic crystal structures, both topologically trivial and non-trivial, with embedded quantum dots. The results are presented in four journal-style articles that advance the understanding and development of quantum photonic devices. In the first study, I employ quantum dots in waveguide-coupled nanocavities to demonstrate tunable, spin-dependent directional emission of single photons, achieving significant Purcell enhancement and chiral contrast. Next, I utilize topological band gap engineering to create an efficient, compact mode taper that facilitates scalable optical systems and enhanced integration of quantum emitters. In the third article, I introduce a topological add-drop filter that achieves multiport chiral emission and wavelength-selective routing. Finally, I provide a comparative analysis of topological and conventional waveguides. Collectively, this thesis assesses the feasibility and efficiency of topological and conventional waveguides, offering critical insights into the design of on-chip quantum nonlinearities and laying the groundwork for complex, integrated quantum photonic devices.
Metadata
Supervisors: | Wilson, Luke |
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Keywords: | Topological, Symmetry-Broken, Nano-Photonic, Optics, Waveguide, Quantum Dots, Inverse design, Photonic crystal, Quantum technology, Single Photon Source |
Awarding institution: | University of Sheffield |
Academic Units: | The University of Sheffield > Faculty of Science (Sheffield) The University of Sheffield > Faculty of Science (Sheffield) > Physics and Astronomy (Sheffield) |
Depositing User: | Mr Nicholas Martin |
Date Deposited: | 18 Dec 2024 16:22 |
Last Modified: | 18 Dec 2024 16:22 |
Open Archives Initiative ID (OAI ID): | oai:etheses.whiterose.ac.uk:35966 |
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