Publication | Open Access
Nonperturbative Entangling Gates between Distant Qubits Using Uniform Cold Atom Chains
120
Citations
33
References
2011
Year
EngineeringMany-body Quantum PhysicArbitrary Distant QubitsNonperturbative Entangling GatesQubit SeparationsQuantum ComputingQuantum SimulationQuantum NetworkQuantum EntanglementQuantum SciencePhotonicsPhysicsQuantum DeviceQuantum InformationNatural SciencesApplied PhysicsDispersionless PropagationQuantum DevicesQuantum Networking
We propose a new fast scalable method for achieving a two-qubit entangling gate between arbitrary distant qubits in a network by exploiting dispersionless propagation in uniform chains. This is achieved dynamically by switching on a strong interaction between the qubits and a bus formed by a nonengineered chain of interacting qubits. The quality of the gate scales very efficiently with qubit separations. Surprisingly, a sudden switching of the couplings is not necessary. Moreover, our gate mechanism works for multiple gate operations without resetting the bus. We propose a possible experimental realization in cold atoms trapped in optical lattices and near field Fresnel trapping potentials.
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