Realization and characterization of a 2-photon 4-qubit linear cluster state
Giuseppe Vallone, Enrico Pomarico, Paolo Mataloni, F. De Martini, V. Berardi
Abstract
Giuseppe Vallone, Enrico Pomarico, Paolo Mataloni, F. De Martini, V. Berardi
Abstract
Cluster states, recently introduced as a fundamental resource for one-way quantum computation, represent genuine multiqubits entangled states. The one-way model is based on the initial preparation of entangled qubits in the cluster state, followed by single qubits measurements and feed-forwards. All the difficulties present in the standard computation model, for instance the implementation of two qubits gates, are transferred in the one-way model to the state preparation.
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Cluster states, recently introduced as a fundamental resource for one-way quantum computation, represent genuine multiqubits entangled states. The one-way model is based on the initial preparation of entangled qubits in the cluster state, followed by single qubits measurements and feed-forwards. All the difficulties present in the standard computation model, for instance the implementation of two qubits gates, are transferred in the one-way model to the state preparation.
Key concepts: Cluster state, Qubit, Realization (probability), Quantum computer, One-way quantum computer, Computation, State (computer science), Cluster (spacecraft)