We present the project of an optical scheme that allows to engineer a 2-photon 6-qubit linear cluster state. By this scheme we are able to create a hyperentangled state based on polarization, linear momentum and arrival time entanglement. Since the three degrees of freedom of the photons are fully independent, the hyperentangled state allows the maximum entanglement of the particles. By suitable local unitary operations the hyperentangled state can be easily transformed into a linear cluster state, with important applications in photonic quantum computation and quantum nonlocality tests
In recent years, a number of theoretical and experimental demonstrations regarding the use of photon...
Photonic cluster states are a crucial resource for optical quantum computing. Recently a quantum dot...
Quantum computing promises a new paradigm of computation where information is processed in a way tha...
We present the project of an optical scheme that allows to engineer a 2-photon 6-qubit linear cluste...
Quantum states of two photons simultaneously entangled in polarization and linear momentum, namely h...
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 ...
We create a six-qubit linear cluster state by transforming a two-photon hyperentangled state in whic...
Encoding many qubits in different degrees of freedom (DOFs) of single photons is one of the routes t...
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...
We discuss two possible ways to increase the dimension of a 4-qubit hyperentangled state of two phot...
High fidelity, high count rate four qubit linear cluster states have been realized by using two phot...
A six-qubit hyperentangled state has been realized by entangling two photons in three degrees of fre...
We report on the quantification of entanglement by means of entanglement measures on a four- and a s...
In recent years, a number of theoretical and experimental demonstrations regarding the use of photon...
Photonic cluster states are a crucial resource for optical quantum computing. Recently a quantum dot...
Quantum computing promises a new paradigm of computation where information is processed in a way tha...
We present the project of an optical scheme that allows to engineer a 2-photon 6-qubit linear cluste...
Quantum states of two photons simultaneously entangled in polarization and linear momentum, namely h...
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 ...
We create a six-qubit linear cluster state by transforming a two-photon hyperentangled state in whic...
Encoding many qubits in different degrees of freedom (DOFs) of single photons is one of the routes t...
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...
We discuss two possible ways to increase the dimension of a 4-qubit hyperentangled state of two phot...
High fidelity, high count rate four qubit linear cluster states have been realized by using two phot...
A six-qubit hyperentangled state has been realized by entangling two photons in three degrees of fre...
We report on the quantification of entanglement by means of entanglement measures on a four- and a s...
In recent years, a number of theoretical and experimental demonstrations regarding the use of photon...
Photonic cluster states are a crucial resource for optical quantum computing. Recently a quantum dot...
Quantum computing promises a new paradigm of computation where information is processed in a way tha...