Controlling the Dynamics of Quantum Mechanical Systems Sustaining Dipole-Forbidden Transitions via Optical Nanoantennas
arXiv:1110.3927 · doi:10.1103/PhysRevB.86.035404
Abstract
We suggest to excite dipole-forbidden transitions in quantum-mechanical systems by using appropriately designed optical nanoantennas. The antennas are tailored such that their near-field contains sufficiently strong contributions of higher-order multipole moments. The strengths of these moments exceed their free space analogs by several orders of magnitude. The impact of such excitation enhancement is exemplarily investigated by studying the dynamics of a three-level system. It decays upon excitation by an electric quadrupole transition via two electric dipole transitions. Since one dipole transition is assumed to be radiative, the enhancement of this emission serves as a figure of merit. Such self-consistent treatment of excitation, emission, and internal dynamics as developed in this contribution is the key to predict any observable quantity. The suggested scheme may represent a blueprint for future experiments and will find many obvious spectroscopic and sensing applications.
References in corpus (5)
- A planar dielectric antenna for directional single-photon emission and near-unity collection efficiency
- Optical properties of coupled metal-semiconductor and metal-molecule nanocrystal complexes: the role of multipole effects
- Circular Optical Nanoantennas: An Analytical Theory
- Fluorescence enhancement with the optical (bi-) conical antenna
- Emission properties of an oscillating point dipole from a gold Yagi-Uda nanoantenna array
Cited by in corpus (17)
- Magnetic Dipole and Electric Quadrupole Transitions in the Trivalent Lanthanide Series: Calculated Emission Rates and Oscillator Strengths
- Plasmon-Emitter Interactions at the Nanoscale
- Tunable Graphene Antennas for Selective Enhancement of THz-Emission
- Strong coupling of optical nanoantennas and atomic systems
- Activating spin-forbidden transitions in molecules by the highly localized plasmonic field
- Enhancement of and interference among higher order multipole transitions in molecules near a plasmonic nanoantenna
- Dipolar and Quadrupolar Excitons Coupled to a Nanoparticle-on-a-Mirror Cavity
- Nanoantennas for ultrabright single photon sources
- Shaping Polaritons to Reshape Selection Rules
- Giant chiroptical effect caused by the electric quadrupole
- A plasmonic nanoantenna based triggered single photon source
- Breaking the Selection Rules of Spin-Forbidden Molecular Absorption in Plasmonic Nanocavities
- Interaction of atomic systems with quantum vacuum beyond electric dipole approximation
- Strong multipolar transition enhancement with graphene nanoislands
- Light-dressed states under intense optical near fields
- Quadrupole Interaction of Non-diffracting Beams with Two-Level Atoms
- Analysis of optical near-field energy transfer by stochastic model unifying architectural dependencies