Excitons in square quantum wells: microscopic modeling and experiment
arXiv:1508.00480 · doi:10.1063/1.4948664
Abstract
The binding energy and the corresponding wave function of excitons in GaAs-based finite square quantum wells (QWs) are calculated by the direct numerical solution of the three-dimensional Schroedinger equation. The precise results for the lowest exciton state are obtained by the Hamiltonian discretization using the high-order finite-difference scheme. The microscopic calculations are compared with the results obtained by the standard variational approach. The exciton binding energies found by two methods coincide within 0.1 meV for the wide range of QW widths. The radiative decay rate is calculated for QWs of various widths using the exciton wave functions obtained by direct and variational methods. The radiative decay rates are confronted with the experimental data measured for high-quality GaAs/AlGaAs and InGaAs/GaAs QW heterostructures grown by molecular beam epitaxy. The calculated and measured values are in good agreement, though slight differences with earlier calculations of the radiative decay rate are observed.
14 pages, 10 figures
References in corpus (6)
- Giant Rydberg Excitons in Cuprous Oxide
- Realization of an all optical exciton-polariton router
- Nontrivial relaxation dynamics of excitons in high-quality InGaAs/GaAs quantum wells
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- Exciton-exciton and exciton-charge carrier interaction and the exciton collisional broadening in GaAs/AlGaAs quantum wells
- Exciton-polariton interference controlled by electric field
- Energy states of Rydberg excitons in finite crystals: From weak to strong confinement
- Semiconductor membranes for electrostatic exciton trapping in optically addressable quantum transport devices
- Resonance energies and linewidths of Rydberg excitons in CuO quantum wells
- Theoretical proposals to measure resonator-induced modifications of the electronic ground-state in doped quantum wells
- Effect of electric field on excitons in wide quantum wells
- Linewidths and energy shifts of the electron-impurity resonant states in quantum wells with infinite barriers
- Wavefunctions and oscillator strengths of Rydberg excitons in cuprous oxide quantum wells