Nonlocal optical response in metallic nanostructures
arXiv:1412.0942 · doi:10.1088/0953-8984/27/18/183204
Abstract
This review provides a broad overview of the studies and effects of nonlocal response in metallic nanostructures. In particular, we thoroughly present the nonlocal hydrodynamic model and the recently introduced generalized nonlocal optical response (GNOR) model. The influence of nonlocal response on plasmonic excitations is studied in key metallic geometries, such as spheres and dimers, and we derive new consequences due to the GNOR model. Finally, we propose several trajectories for future work on nonlocal response, including experimental setups that may unveil further effects of nonlocal response.
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Cited by in corpus (18)
- Quantum Nanophotonics in Two-Dimensional Materials
- Black Phosphorus Plasmonics: Anisotropic Elliptical Propagation and Nonlocality-Induced Canalization
- A hydrodynamic model approach to the formation of plasmonic wakes in graphene
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- Enhanced Control of Quantum Dot Photoluminescence in Hybrid Assemblies
- Efficient multiscale algorithms for simulating nonlocal optical response of metallic nanostructure arrays