Publication | Open Access
Excitons in electrostatic traps
93
Citations
16
References
2006
Year
Quantum ScienceElectrical EngineeringExciton ConfinementEngineeringQuantum ComputingPhysicsIn-plane Electric FieldElectrostatic TrapsQuantum DeviceElectrohydrodynamicsApplied PhysicsElectric FieldsAtomic PhysicsExcitation Energy TransferIndirect ExcitonsQuantum Photonic DeviceCharge Transport
We consider in-plane electrostatic traps for indirect excitons in coupled quantum wells, where the traps are formed by a laterally modulated gate voltage. An intrinsic obstacle for exciton confinement in electrostatic traps is an in-plane electric field that can lead to exciton dissociation. We propose a design to suppress the in-plane electric field and, at the same time, to effectively confine excitons in the electrostatic traps. We present calculations for various classes of electrostatic traps and experimental proof of principle for trapping of indirect excitons in electrostatic traps.
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