Topology driven g-factor tuning in type-II quantum dots
arXiv:1710.08828 · doi:10.1103/PhysRevApplied.11.044011
Abstract
We investigate how the voltage control of the exciton lateral dipole moment induces a transition from singly to doubly connected topology in type II InAs/GaAsSb quantum dots. The latter causes visible Aharonov-Bohm oscillations and a change of the exciton g-factor which are modulated by the applied bias. The results are explained in the frame of realistic and effective Hamiltonian models and could open a venue for new spin quantum memories beyond the InAs/GaAs realm.
Final Version
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Cited by in corpus (4)
- Optical response of (InGa)(AsSb)/GaAs quantum dots embedded in a GaP matrix
- On the importance of antimony for temporal evolution of emission from self-assembled (InGa)(AsSb)/GaAs quantum dots on GaP(001)
- Excitonic fine structure of epitaxial Cd(Se,Te) on ZnTe type-II quantum dots
- Spin dependent analysis of homogeneous and inhomogeneous exciton decoherence in magnetic fields