Spin-based all-optical quantum computation with quantum dots: Understanding and suppressing decoherence
- 14 July 2003
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review A
- Vol. 68 (1) , 012310
- https://doi.org/10.1103/physreva.68.012310
Abstract
We present an all-optical implementation of quantum computation using semiconductor quantum dots. Quantum memory is represented by the spin of an excess electron stored in each dot. Two-qubit gates are realized by switching on trion-trion interactions between different dots. State selectivity is achieved via conditional laser excitation exploiting Pauli exclusion principle. Read out is performed via a quantum-jump technique. We analyze the effect on our scheme’s performance of the main imperfections present in real quantum dots: exciton decay, hole mixing, and phonon decoherence. We introduce an adiabatic gate procedure that allows one to circumvent these effects and evaluate quantitatively its fidelity.Keywords
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