DOE OSTI · 1827692
Quantum Fields on Driven Plasmonic Nanostructures
Abstract
Localized Surface Plasmon Resonances (LSPR), generated by the interaction of EM-fields with conductive nanoparticles, are represented as localized coherent quasi-particles which strongly interact with each other and the external environment. These interactions generate non-linear phenomena which can propagate through the nanoparticle structure. These phenomena could be represented as non-local quasi-particles possessing intensity, phase, spin and helicity. This research will explore the physics of non-local effects caused by LSPR interactions in large symmetric nanostructures with the intent of establishing a framework to understand and apply them to plasmonic circuits and sensing devices.
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O'Rourke, Patrick E.. 2021-10-15. Quantum Fields on Driven Plasmonic Nanostructures. https://doi.org/10.2172/1827692
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