Diagnostics of the efficiency of surface plasmon-polariton excitation by quantum dots via polarization measurements of the output radiation

It is demonstrated that the efficiency of surface plasmon-polariton excitation at a metal-semiconductor interface by active quantum dots can be determined from measurements of the polarization characteristics of the output radiation. Experimentally, the proposed diagnostic method is based on finding...

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Veröffentlicht in:Semiconductors (Woodbury, N.Y.) N.Y.), 2015-06, Vol.49 (6), p.785-790
Hauptverfasser: Kukushkin, V. A., Baidus, N. V., Zdoroveishchev, A. V.
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container_issue 6
container_start_page 785
container_title Semiconductors (Woodbury, N.Y.)
container_volume 49
creator Kukushkin, V. A.
Baidus, N. V.
Zdoroveishchev, A. V.
description It is demonstrated that the efficiency of surface plasmon-polariton excitation at a metal-semiconductor interface by active quantum dots can be determined from measurements of the polarization characteristics of the output radiation. Experimentally, the proposed diagnostic method is based on finding the ratio of the intensities of the output radiation with polarizations orthogonal and parallel to the nanoheterostructure plane for two different distances between the quantum-dot layer and the metal-semiconductor interface. These data are then used to obtain the unknown parameters in the proposed mathematical model which makes it possible to calculate the rate of surface plasmon-polariton excitation by active quantum dots. As a result, this rate can be determined without complicated expensive equipment for fast time-resolved measurements.
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source SpringerLink Journals - AutoHoldings
subjects Analysis
EFFICIENCY
EXCITATION
HETEROJUNCTIONS
INTERFACES
LAYERS
Low-Dimensional Systems
Magnetic Materials
Magnetism
MATERIALS SCIENCE
Measurement
METALS
NANOSCIENCE AND NANOTECHNOLOGY
Physics
Physics and Astronomy
PLASMONS
POLARIZATION
QUANTUM DOTS
Quantum Phenomena
Radiation
SEMICONDUCTOR MATERIALS
Semiconductor Structures
SURFACES
TIME RESOLUTION
title Diagnostics of the efficiency of surface plasmon-polariton excitation by quantum dots via polarization measurements of the output radiation
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