We show theoretically that the strong coupling of circularly polarized photons to an exciton in ringlike semiconductor nanostructures results in physical nonequivalence of clockwise and counterclockwise exciton rotations in the ring. As a consequence, the stationary energy splitting of exciton states corresponding to these mutually opposite rotations appears. This excitonic Aharonov-Bohm effect depends on the intensity and frequency of the circularly polarized field and can be detected in state-of-the-art optical experiments.Published versio
We report a comprehensive discussion of quantum interference effects due to the finite structure of ...
We investigate the exciton energy level structure of a large ensemble of InAs/GaAs quantum rings by ...
We report a comprehensive discussion of quantum interference effects due to the finite structure of ...
We show theoretically that the strong coupling of circularly polarized photons to an exciton in ring...
We show theoretically that strong electron coupling to circularly polarized photons in non-singly-co...
The magnetic field effects on excitons in an InAs nanoring are studied theoretically. By numerically...
We report on a magnetophotoluminescence study of single self-assembled semiconductor nanorings which...
We study theoretically the optical properties of an exciton in a two-dimensional ring threaded by a ...
We study analytically the optical properties of a simple model for an electron-hole pair on a ring s...
International audienceThe Aharonov-Bohm effect in ring structures in the presence of electronic corr...
We found that optical Aharonov–Bohm oscillations in a single GaAs/GaAlAs quantum ring can be control...
The Aharonov-Bohm effect in ring structures in the presence of electronic correlation and disorder i...
We report a theoretical study on the magnetooptical properties of recently synthesized concentric qu...
We study the Aharonov-Bohm effect for an exciton on a nano-ring using a 2D attractive fermionic Hubb...
Given their unique structural properties, quantum rings (QRs) structures have recently been of parti...
We report a comprehensive discussion of quantum interference effects due to the finite structure of ...
We investigate the exciton energy level structure of a large ensemble of InAs/GaAs quantum rings by ...
We report a comprehensive discussion of quantum interference effects due to the finite structure of ...
We show theoretically that the strong coupling of circularly polarized photons to an exciton in ring...
We show theoretically that strong electron coupling to circularly polarized photons in non-singly-co...
The magnetic field effects on excitons in an InAs nanoring are studied theoretically. By numerically...
We report on a magnetophotoluminescence study of single self-assembled semiconductor nanorings which...
We study theoretically the optical properties of an exciton in a two-dimensional ring threaded by a ...
We study analytically the optical properties of a simple model for an electron-hole pair on a ring s...
International audienceThe Aharonov-Bohm effect in ring structures in the presence of electronic corr...
We found that optical Aharonov–Bohm oscillations in a single GaAs/GaAlAs quantum ring can be control...
The Aharonov-Bohm effect in ring structures in the presence of electronic correlation and disorder i...
We report a theoretical study on the magnetooptical properties of recently synthesized concentric qu...
We study the Aharonov-Bohm effect for an exciton on a nano-ring using a 2D attractive fermionic Hubb...
Given their unique structural properties, quantum rings (QRs) structures have recently been of parti...
We report a comprehensive discussion of quantum interference effects due to the finite structure of ...
We investigate the exciton energy level structure of a large ensemble of InAs/GaAs quantum rings by ...
We report a comprehensive discussion of quantum interference effects due to the finite structure of ...