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This article is cited in 1 scientific paper (total in 1 paper)
International school-seminar ''Excitons in crystals and semiconductor nanostructures'', dedicated to the 120th anniversary of the birth of E. F. Gross, St. Petersburg, October 10-12, 2017
Low-Dimensional Systems
Spectroscopy of plasmon-excitons in semiconductor–metal nanostructures
V. A. Kosobukin Ioffe Institute, St. Petersburg
Abstract:
The results of the theory considering mixed plasmon-excitonic modes and their spectroscopy are presented. The plasmon-excitons are formed owing to strong Coulomb coupling between quasi-two-dimensional excitons of a quantum well and dipole plasmons of nanoparticles. The effective polarizability associated with a nanoparticle is calculated in a self-consistent approximation taking into account the local field determined by in-layer dipole plasmons and their image charges due to the excitonic polarization of a near quantum well. The spectra of elastic scattering and specular reflection of light are investigated in cases of a single silver nanoparticle and a monolayer of such particles situated in close proximity to a quantum well GaAs/AlGaAs. The optical spectra show a two-peak structure with a deep and narrow dip in the resonant range of plasmon-excitons. Propagation of plasmon-excitonic polaritons is discussed for periodic superlattices whose unit cell consists of a quantum well and a layer of metal nanoparticles. The superradiance regime originating in the Bragg diffraction of plasmon-excitonic polaritons by the superlattice is investigated. It is shown that the broad spectrum of plasmonic reflection depending on the number of unit cells in a superlattice also has a narrow dip at the exciton frequency.
Citation:
V. A. Kosobukin, “Spectroscopy of plasmon-excitons in semiconductor–metal nanostructures”, Fizika Tverdogo Tela, 60:8 (2018), 1606–1611; Phys. Solid State, 60:8 (2018), 1653–1659
Linking options:
https://www.mathnet.ru/eng/ftt9117 https://www.mathnet.ru/eng/ftt/v60/i8/p1606
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