Publication | Open Access
Impurity effects on the Aharonov-Bohm optical signatures of neutral quantum-ring magnetoexcitons
63
Citations
24
References
2004
Year
Quantum PhotonicsEngineeringRing StructureQuantum EngineeringPolariton DynamicQuantum MaterialsAharonov-bohm Optical SignaturesQuantum SciencePhotoluminescencePhysicsType-ii Quantum DotQuantum MagnetismNeutral Quantum-ring MagnetoexcitonsImpurity EffectsNatural SciencesApplied PhysicsCondensed Matter PhysicsQuantum Photonic DeviceMagnetic FieldOptoelectronics
We study the role of impurity scattering on the photoluminescence (PL) emission of polarized magnetoexcitons. We consider systems where both the electron and hole are confined on a ring structure (quantum rings) as well as on a type-II quantum dot. Despite their neutral character, excitons exhibit strong modulation of energy and oscillator strength in the presence of magnetic fields. Scattering impurities enhance the PL intensity on otherwise ``dark'' magnetic field windows and nonzero PL emission appears for a wide magnetic field range even at zero temperature. For higher temperatures, impurity-induced anticrossings on the excitonic spectrum lead to unexpected peaks and valleys on the PL intensity as function of magnetic field. Such behavior is absent on ideal systems and can account for prominent features in recent experimental results.
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