Publication | Open Access
Nonadiabatic Holonomic Quantum Computation in Decoherence-Free Subspaces
293
Citations
28
References
2012
Year
Quantum ScienceEngineeringQuantum ComputingPhysicsDecoherence-free SubspacesNatural SciencesCoherence Stabilization VirtuesQuantum AlgorithmCollective DephasingQuantum DevicesQuantum SystemLogical QubitQuantum EntanglementQuantum Error CorrectionQuantum Decoherence
Quantum computation that combines the coherence stabilization virtues of decoherence-free subspaces and the fault tolerance of geometric holonomic control is of great practical importance. Some schemes of adiabatic holonomic quantum computation in decoherence-free subspaces have been proposed in the past few years. However, nonadiabatic holonomic quantum computation in decoherence-free subspaces, which avoids a long run-time requirement but with all the robust advantages, remains an open problem. Here, we demonstrate how to realize nonadiabatic holonomic quantum computation in decoherence-free subspaces. By using only three neighboring physical qubits undergoing collective dephasing to encode one logical qubit, we realize a universal set of quantum gates.
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