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Projected Dipole Model for Quantum Plasmonics
- Source :
- Yan, W, Wubs, M & Mortensen, N A 2015, ' Projected Dipole Model for Quantum Plasmonics ', Physical Review Letters, vol. 115, no. 13, 137403 . https://doi.org/10.1103/physrevlett.115.137403
- Publication Year :
- 2015
- Publisher :
- American Physical Society (APS), 2015.
-
Abstract
- Quantum effects of plasmonic phenomena have been explored through ab-initio studies, but only for exceedingly small metallic nanostructures, leaving most experimentally relevant structures too large to handle. We propose instead an effective description with the computationally appealing features of classical electrodynamics, while quantum properties are described accurately through an infinitely thin layer of dipoles oriented normally to the metal surface. The nonlocal polarizability of the dipole layer is mapped from the free-electron distribution near the metal surface as obtained with 1D quantum calculations, such as time-dependent density-functional theory (TDDFT), and is determined once and for all. The model can be applied to any system size that is tractable within classical electrodynamics, while capturing quantum plasmonic aspects of nonlocal response and a finite work function with TDDFT-level accuracy. Applying the theory to dimers we find quantum-corrections to the hybridization even in mesoscopic dimers as long as the gap is sub-nanometric itself.<br />Comment: Supplemental Material is available upon request to authors
- Subjects :
- Plasmons
Quantum dynamics
Electrodynamics
FOS: Physical sciences
General Physics and Astronomy
Electrons
PHYSICS
NANOSTRUCTURES
ENERGY
Physics and Astronomy (all)
Open quantum system
ENHANCEMENT
DEPENDENCE
Quantum electronics
Quantum mechanics
Classical electrodynamics
cond-mat.mes-hall
Mesoscale and Nanoscale Physics (cond-mat.mes-hall)
NANOPARTICLES
Physics::Atomic and Molecular Clusters
Classical electromagnetism
Metallic nanostructure
Quantum
Physics
Quantum optics
Mesoscopic physics
Condensed Matter - Mesoscale and Nanoscale Physics
Quantum correction
Quantum calculation
RESONANCE
AG-CLUSTERS
Nonlocal response
Time dependent density functional theory
Quantum theory
Quantum plasmonics
DENSITY
Quantum process
Density functional theory
METAL-SURFACES
physics.optics
Quantum properties
OPTICS
Calculations
Quantum dissipation
Physics - Optics
Optics (physics.optics)
Subjects
Details
- ISSN :
- 10797114 and 00319007
- Volume :
- 115
- Database :
- OpenAIRE
- Journal :
- Physical Review Letters
- Accession number :
- edsair.doi.dedup.....34cbceaea8c759e4d04cd01575720401