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.
References in corpus (19)
- Theory of surface plasmons and surface-plasmon polaritons
- Plasmons in nearly touching metallic nanoparticles: singular response in the limit of touching dimers
- Non-local effects in effective medium response of nano-layered meta-materials
- Blueshift of the surface plasmon resonance in silver nanoparticles studied with EELS
- Nonlocal Homogenization Model for a Periodic Array of Epsilon-Negative Rods
- Nonlocal Response of Metallic Nanospheres Probed by Light, Electrons, and Atoms
- Ab-initio nanoplasmonics: The impact of atomic structure
- Surface plasmon modes of a single silver nanorod: an electron energy loss study
- Damping rates of surface plasmons for particles of size from nano- to micrometers; reduction of the nonradiative decay
- Hyperbolic metamaterials: nonlocal response regularizes broadband super-singularity
- Homogeneous optical cloak constructed with uniform layered structures
- Classical and Quantum Plasmonics in Graphene Nanodisks: the Role of Edge States
- Surface-enhanced Raman spectroscopy (SERS): nonlocal limitations
- Nonlocal study of ultimate plasmon hybridization
- Nonlocal effects: relevance for the spontaneous emission rates of quantum emitters coupled to plasmonic structures
- Nonlocal and Quantum Tunneling Contributions to Harmonic Generation in Nanostructures: Electron Cloud Screening Effects
- Nonlocal Electromagnetic Response of Graphene Nanostructures
- Field enhancement at metallic interfaces due to quantum confinement
- Subdiffraction-limited imaging based on longitudinal modes in a spatially dispersive slab