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Quantum computation with quantum dots

Physical Review A · 1998 · Vol. 57(1) · pp. 120–126
Daniel LossDavid P. DiVincenzo

Abstract

We propose an implementation of a universal set of one- and two-quantum-bit gates for quantum computation using the spin states of coupled single-electron quantum dots. Desired operations are effected by the gating of the tunneling barrier between neighboring dots. Several measures of the gate quality are computed within a recently derived spin master equation incorporating decoherence caused by a prototypical magnetic environment. Dot-array experiments that would provide an initial demonstration of the desired nonequilibrium spin dynamics are proposed.

Quantum and electron transport phenomenaQuantum Computing Algorithms and ArchitectureQuantum-Dot Cellular AutomataQuantum decoherenceQuantum computerQuantum dotUniversal setQuantum tunnellingPhysicsQuantum mechanicsSpin (aerodynamics)Quantum gateComputation

Funding

  • National Science Foundation
Citations
6,691
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References
Elementary gates for quantum computation
Physical Review A · 1995 · 4,250 citations
Quantum Theory: Concepts and Methods
American Journal of Physics · 1995 · 2,530 citations
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