Title of article :
Förster signatures and qubits in optically driven quantum dot molecules
Author/Authors :
Juan E. Rolon، نويسنده , , Sergio E. Ulloa، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2008
Pages :
3
From page :
1481
To page :
1483
Abstract :
An interesting approach to achieve quantum gate operations in a solid state device is to implement an optically driven quantum gate using two vertically coupled self-assembled quantum dots, a quantum dot molecule (QDM). We present a realistic model for exciton dynamics in InGaAs/GaAs QDMs under intense laser excitation and applied electric fields. The dynamics is obtained by solutions of the Lindblad master equation. A map of the dressed ground state as function of laser energy and applied electric field exhibits rich structure that includes excitonic anticrossings that permit the identification of the relevant couplings. The optical signatures of the dipole–dipole Förster energy transfer mechanism show as splittings of several (spatially) indirect excitonic lines. Moreover, we construct a model for exciton qubit rotations by adiabatic electric field cyclic sweeps into a Förster-tunneling regime which induces level anticrossings. The proposed qubit exhibits Rabi oscillations among two well-defined exciton pairs as function of the residence time at the anticrossing.
Keywords :
Quantum dot molecules , Excitons , F?rster energy transfer , Rabi oscillations
Journal title :
Physica E Low-dimensional Systems and Nanostructures
Serial Year :
2008
Journal title :
Physica E Low-dimensional Systems and Nanostructures
Record number :
1047110
Link To Document :
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