On the Theory of Plasmon–Excitons: An Estimate of the Coupling Constant and the Optical Spectrum

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Abstract

The structure of the optical spectra related to the resonant interaction of quasi-two-dimensional excitons and localized plasmons is investigated theoretically. The constant of plasmon–exciton coupling is estimated in a model considering a semiconductor quantum well close to a layer of metal nanoparticles in an adjacent dielectric medium. Numerical calculations carried out for GaAs/Ag and ZnO/Al nanosystems indicate that near the plasmon–exciton resonance the spectrum features a double-peak structure which exhibits the plasmon-excitonic anticrossing behavior upon detuning from exact resonance.

About the authors

N. S. Averkiev

Ioffe Institute

Email: KorotchenkovAlex@gmail.com
Russian Federation, St. Petersburg, 194021

A. V. Korotchenkov

Ioffe Institute

Author for correspondence.
Email: KorotchenkovAlex@gmail.com
Russian Federation, St. Petersburg, 194021

V. A. Kosobukin

Ioffe Institute

Email: KorotchenkovAlex@gmail.com
Russian Federation, St. Petersburg, 194021


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