Publication | Open Access
Unconventional Geometric Quantum Computation
264
Citations
33
References
2003
Year
Quantum ScienceEngineeringQuantum ComputingGeometryQuantum Optimization AlgorithmNatural SciencesGeometric QuantizationQuantum AlgorithmQuantum SwitchesNew ClassQuantum DevicesQuantum EntanglementUnconventional Geometric GatesComputational GeometryQuantum Error CorrectionQuantum AlgorithmsDynamic Phase Shift
We propose a new class of unconventional geometric gates involving nonzero dynamic phases, and elucidate that geometric quantum computation can be implemented by using these gates. Comparing with the conventional geometric gate operation, in which the dynamic phase shift must be removed or avoided, the gates proposed here may be operated more simply. We illustrate in detail that unconventional nontrivial two-qubit geometric gates with built-in fault-tolerant geometric features can be implemented in real physical systems.
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