Cluster states of two photons and four qubits, built on the double entanglement of two photons in the degrees of freedom of polarization and linear momentum, have been used in the realization of a complete set of basic operations of one-way quantum computation. Basic computation algorithms, namely, the Grover's search and the Deutsch's algorithm, have been realized by using these states. Hyperentangled states of increasing size are of paramount importance for the realization of even more complex algorithms and can be extended to a lager number of degrees of freedom of the photons. Some recent results obtained with entangled states of two photons and six qubits are presented
We discuss two possible ways to increase the dimension of a 4-qubit hyperentangled state of two phot...
We create a six-qubit linear cluster state by transforming a two-photon hyperentangled state in whic...
Taking advantage of quantum mechanics for executing computational tasks faster than classical comput...
Cluster states of two photons and four qubits, built on the double entanglement of two photons in th...
We describe the application of four-qubit cluster states, built on the simultaneous entanglement of ...
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...
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 ...
Quantum states of two photons simultaneously entangled in polarization and linear momentum, namely h...
High fidelity, high count rate four qubit linear cluster states have been realized by using two phot...
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...
We present the project of an optical scheme that allows to engineer a 2-photon 6-qubit linear cluste...
By using 2-photon 4-qubit cluster states we demonstrate deterministic one-way quantum computation in...
We discuss two possible ways to increase the dimension of a 4-qubit hyperentangled state of two phot...
We create a six-qubit linear cluster state by transforming a two-photon hyperentangled state in whic...
Taking advantage of quantum mechanics for executing computational tasks faster than classical comput...
Cluster states of two photons and four qubits, built on the double entanglement of two photons in th...
We describe the application of four-qubit cluster states, built on the simultaneous entanglement of ...
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...
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 ...
Quantum states of two photons simultaneously entangled in polarization and linear momentum, namely h...
High fidelity, high count rate four qubit linear cluster states have been realized by using two phot...
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...
We present the project of an optical scheme that allows to engineer a 2-photon 6-qubit linear cluste...
By using 2-photon 4-qubit cluster states we demonstrate deterministic one-way quantum computation in...
We discuss two possible ways to increase the dimension of a 4-qubit hyperentangled state of two phot...
We create a six-qubit linear cluster state by transforming a two-photon hyperentangled state in whic...
Taking advantage of quantum mechanics for executing computational tasks faster than classical comput...