Cluster states are the fundamental resource for the one-way model of quantum computation. In this paper we show the realization of a two-photon four-qubit cluster state. The qubits are encoded in the polarization and the linear momentum of the particles. By using this state we realized two important quantum algorithms, namely the Grover's search and the Deutsch's algorithm
Quantum states of two photons simultaneously entangled in polarization and linear momentum, namely h...
We give a detailed account of the one-way quantum computer, a scheme of quantum computation that con...
Six-qubit cluster states built on the simultaneous entanglement of two photons in three independent ...
Cluster states are the fundamental resource for the one-way model of quantum computation. In this pa...
We describe the application of four-qubit cluster states, built on the simultaneous entanglement of ...
Cluster states of two photons and four qubits, built on the double entanglement of two photons in th...
Cluster states of two photons and four qubits, built on the double entanglement of two photons in th...
Standard quantum computation is based on sequences of unitary quantum logic gates that process qubit...
Standard quantum computation is based on sequences of unitary quantum logic gates which process qubi...
By using 2-photon 4-qubit cluster states we demonstrate deterministic one-way quantum computation in...
High fidelity, high count rate four qubit linear cluster states have been realized by using two phot...
We describe an experimental realization of the Deutsch-Jozsa quantum algorithm to evaluate the prope...
This article is a short introduction to and review of the cluster-state model of quantum computation...
We report the first experimental demonstration of an all-optical one-way implementation of Deutsch's...
Six-qubit cluster states built on the simultaneous entanglement of two photons in three independent ...
Quantum states of two photons simultaneously entangled in polarization and linear momentum, namely h...
We give a detailed account of the one-way quantum computer, a scheme of quantum computation that con...
Six-qubit cluster states built on the simultaneous entanglement of two photons in three independent ...
Cluster states are the fundamental resource for the one-way model of quantum computation. In this pa...
We describe the application of four-qubit cluster states, built on the simultaneous entanglement of ...
Cluster states of two photons and four qubits, built on the double entanglement of two photons in th...
Cluster states of two photons and four qubits, built on the double entanglement of two photons in th...
Standard quantum computation is based on sequences of unitary quantum logic gates that process qubit...
Standard quantum computation is based on sequences of unitary quantum logic gates which process qubi...
By using 2-photon 4-qubit cluster states we demonstrate deterministic one-way quantum computation in...
High fidelity, high count rate four qubit linear cluster states have been realized by using two phot...
We describe an experimental realization of the Deutsch-Jozsa quantum algorithm to evaluate the prope...
This article is a short introduction to and review of the cluster-state model of quantum computation...
We report the first experimental demonstration of an all-optical one-way implementation of Deutsch's...
Six-qubit cluster states built on the simultaneous entanglement of two photons in three independent ...
Quantum states of two photons simultaneously entangled in polarization and linear momentum, namely h...
We give a detailed account of the one-way quantum computer, a scheme of quantum computation that con...
Six-qubit cluster states built on the simultaneous entanglement of two photons in three independent ...