Strongly correlated plexcitonics: evolution of the Fano resonance in the presence of Kondo correlations.

@article{Goker2015StronglyCP,
  title={Strongly correlated plexcitonics: evolution of the Fano resonance in the presence of Kondo correlations.},
  author={A. Goker},
  journal={Physical chemistry chemical physics : PCCP},
  year={2015},
  volume={17 17},
  pages={
          11569-76
        }
}
  • A. Goker
  • Published 21 April 2015
  • Physics
  • Physical chemistry chemical physics : PCCP
We study the optical absorption of a system consisting of a diatomic molecule that exhibits strong electron correlations coupled to metal nanoparticles possessing plasmon resonances by invoking the time-dependent non-crossing approximation. We investigate the evolution of the Fano resonance arising from the plasmon-exciton coupling when both atoms are Coulomb blockaded. We found that the Fano resonance rapidly dwindles as the ambient temperature exceeds the Kondo temperature of the singly… 
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References

SHOWING 1-10 OF 26 REFERENCES
Quantum plexcitonics: strongly interacting plasmons and excitons.
TLDR
A fully quantum mechanical approach to describe the coupling between plasmons and excitonic systems such as molecules or quantum dots is presented, which opens a new avenue to deal with strongly interacting plasmon-excition hybrid systems.
Optical response of strongly coupled quantum dot-metal nanoparticle systems: double peaked Fano structure and bistability.
TLDR
It is found that the energy absorption spectrum displays an asymmetrical Fano shape (as previously predicted) when there is interference between the applied field and the induced field produced by the SQD at the MNP.
Prediction of femtosecond oscillations in the transient current of a quantum dot in the Kondo regime
We invoke the time-dependent non-crossing approximation in order to study the effects of the density of states of gold contacts on the instantaneous conductance of a single electron transistor which
Collective Plasmon-Molecule Excitations in Nanojunctions: Quantum Consideration
We present a pseudoparticle nonequilibrium Green function formalism as a tool to study the coupling between plasmons and excitons in nonequilibrium molecular junctions. The formalism treats
Incident-angle-modulated molecular plasmonic switches: a case of weak exciton-plasmon coupling.
We have designed an angularly tunable plasmonic system that consists of Au nanodisks in combination with molecules of photoswitchable resonance, spiropyran, to gain new insights into weak
Quantum Plasmonics
TLDR
This review discusses and compares the key models and experiments used to explore how the quantum nature of electrons impacts plasmonics in the context of quantum size corrections of localized plasmons and quantum tunneling between nanoparticle dimers.
Semiconductor-metal nanoparticle molecules: hybrid excitons and the nonlinear fano effect.
TLDR
This work study theoretically the optical properties of hybrid molecules composed of semiconductor and metal nanoparticles and can be viewed as a nonlinear Fano effect which is quite different from the usual linear Fano resonance.
Quantum plasmonics with quantum dot-metal nanoparticle molecules: influence of the Fano effect on photon statistics.
TLDR
The resonance fluorescence of this composite system of hybrid molecules composed of an individual quantum dot and a metallic nanoparticle is calculated and opens a good perspective for applications in active metamaterials and ultracompact single-photon devices.
Many-body theory for charge transfer in atom-surface collisions.
TLDR
This work generalizes the earlier treatment of Langreth and Nordlander to include off-diagonal self-energies and presents a general numerical scheme for the exact solution of the Dyson equations, verifying that it gives the correct answer in several limiting cases where an exact solution is known.
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