Diffraction from excitonic diffraction grating

Author:

Kapitonov Yu V,Shapochkin P Yu,Petrov Yu V,Lovtcius V A,Eliseev S A,Efimov Yu P

Abstract

Abstract In this paper we consider two methods for the theoretical modelling of the reflection and diffraction spectra from an excitonic diffraction grating made from a quantum well with spatial modulation of the exciton resonance. The modelling was performed in the single-scattering approximation, and by the step-by-step approximations of the exact solution of Maxwell’s equations. The expressions are obtained for the modulation of the inhomogeneous broadening of the exciton resonance. Theoretical results are compared with the experimental data for the quantum well grown on an ion irradiated substrate, and for a quantum well irradiated with ions after growth.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference14 articles.

1. Extremely low inhomogeneous broadening of exciton lines in shallow (In, Ga)As/GaAs quantum wells;Poltavtsev;Solid State Commun,2014

2. Increasing of AlGaAs/GaAs quantum well robustness to resonant excitation by lowering Al concentration in barriers;Solovev;Journal of Physics: Conference Series,2015

3. Spectrally selective diffractive optical elements based on 2D-exciton resonance in InGaAs/GaAs single quantum wells;Kapitonov;Phys. Status Solidi B,2013

4. Ion-beam-assisted spatial modulation of inhomogeneous broadening of a quantum well resonance: excitonic diffraction grating;Kapitonov;Optics Letters,2016

5. Effect of irradiation by He+ and Ga+ ions on the 2D-exciton susceptibility of InGaAs/GaAs quantum-well structures;Kapitonov;Phys. Status Solidi B,2015

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