We describe the application of four-qubit cluster states, built on the simultaneous entanglement of two photons in the degrees of freedom of polarization and linear momentum, for the realization of a complete set of basic operations of one-way quantum computation. These consist of arbitrary single-qubit rotations, either probabilistic or deterministic, and simple two-qubit gates, such as a controlled-NOT (CNOT) gate for equatorial qubits and a universal controlled-phase gate (controlled-Z or CZ) gate acting on arbitrary target qubits. Other basic computation operations, such as the Grover\u2019s search and the Deutsch\u2019s algorithms, have been realized by using these states. In all the cases we obtained a high value of the operation fide...
Abstract. We present experimental results of deterministic linear optical Controlled-NOT and SWAP ga...
Taking advantage of quantum mechanics for executing computational tasks faster than classical comput...
Quantum computing promises to exploit the laws of quantum mechanics for processing information in wa...
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...
Cluster states are the fundamental resource for the one-way model of quantum computation. In this pa...
Cluster states are the fundamental resource for the one-way model of quantum computation. In this pa...
By using 2-photon 4-qubit cluster states we demonstrate deterministic one-way quantum computation in...
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...
Six-qubit cluster states built on the simultaneous entanglement of two photons in three independent ...
Six-qubit cluster states built on the simultaneous entanglement of two photons in three independent ...
High fidelity, high count rate four qubit linear cluster states have been realized by using two phot...
Quantum states of two photons simultaneously entangled in polarization and linear momentum, namely h...
We report the first experimental demonstration of an all-optical one-way implementation of Deutsch's...
Abstract. We present experimental results of deterministic linear optical Controlled-NOT and SWAP ga...
Taking advantage of quantum mechanics for executing computational tasks faster than classical comput...
Quantum computing promises to exploit the laws of quantum mechanics for processing information in wa...
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...
Cluster states are the fundamental resource for the one-way model of quantum computation. In this pa...
Cluster states are the fundamental resource for the one-way model of quantum computation. In this pa...
By using 2-photon 4-qubit cluster states we demonstrate deterministic one-way quantum computation in...
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...
Six-qubit cluster states built on the simultaneous entanglement of two photons in three independent ...
Six-qubit cluster states built on the simultaneous entanglement of two photons in three independent ...
High fidelity, high count rate four qubit linear cluster states have been realized by using two phot...
Quantum states of two photons simultaneously entangled in polarization and linear momentum, namely h...
We report the first experimental demonstration of an all-optical one-way implementation of Deutsch's...
Abstract. We present experimental results of deterministic linear optical Controlled-NOT and SWAP ga...
Taking advantage of quantum mechanics for executing computational tasks faster than classical comput...
Quantum computing promises to exploit the laws of quantum mechanics for processing information in wa...