We apply quantum control techniques to a long spin chain by acting only on two qubits at one of its ends, thereby implementing universal quantum computation by a combination of quantum gates on these qubits and indirect SWAP operations across the chain. It is shown that the control sequences can be computed and implemented efficiently. We discuss the application of these ideas to physical systems such as superconducting qubits in which full control of long chains is challenging. © 2011 American Institute of Physics.

Maruyama, K., Burgarth, D., Murphy, M., Montangero, S., Calarco, T., Nori, F., et al. (2011). Spin-chain-based full quantum computation by accessing only two spins [10.1063/1.3630173].

Spin-chain-based full quantum computation by accessing only two spins

Calarco T.;
2011

Abstract

We apply quantum control techniques to a long spin chain by acting only on two qubits at one of its ends, thereby implementing universal quantum computation by a combination of quantum gates on these qubits and indirect SWAP operations across the chain. It is shown that the control sequences can be computed and implemented efficiently. We discuss the application of these ideas to physical systems such as superconducting qubits in which full control of long chains is challenging. © 2011 American Institute of Physics.
2011
Quantum Communication, Measurement and Computing (QCMC) The Tenth International Conference
169
172
Maruyama, K., Burgarth, D., Murphy, M., Montangero, S., Calarco, T., Nori, F., et al. (2011). Spin-chain-based full quantum computation by accessing only two spins [10.1063/1.3630173].
Maruyama, K.; Burgarth, D.; Murphy, M.; Montangero, S.; Calarco, T.; Nori, F.; Plenio, M. B.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1010104
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