The four-qubit states |χij, exhibiting genuinely multi-partite entanglement have been shown to have many interesting properties and have been suggested for novel applications in quantum information processing. In this work we propose a simple quantum circuit and its corresponding optical embodiment with which to prepare photon pairs in the |χij states. Our approach uses hyper-entangled photon pairs, produced by the type-I spontaneous parametric down-conversion (SPDC) process in two contiguous nonlinear crystals, together with a set of simple linear-optical transformations. Our photon pairs are maximally hyper-entangled in both their polarisation and orbital angular momentum (OAM). After one of these daughter photons passes through our optic...
A pump photon in a nonlinear optical crystal may split into two highly correlated daughter photons, ...
Entanglement is a key resource in many quantum information schemes and in the last years the researc...
We demonstrate a general method of engineering the joint quantum state of photon pairs produced in s...
We discuss two possible ways to increase the dimension of a 4-qubit hyperentangled state of two phot...
Advancing quantum information processing is predicated on the preparation of ever-larger multiqubit ...
A six-qubit hyperentangled state has been realized by entangling two photons in three degrees of fre...
Multi-dimensional entangled states have been proven to be more powerful in some quantum information ...
We propose a simple experimental scheme to prepare a type of four-photon entangled state |χ〉 that ha...
Quantum entanglement exhibits various interesting features that emerge only in high-dimensional syst...
Multiphoton entanglement is the basis of many quantum communication schemes, quantum cryptographic p...
Entanglement is a key resource in many quantum information schemes andin the last years the research...
Quantum states of two photons simultaneously entangled in polarization and linear momentum, namely h...
Non-classical states of light, such as entangled photon pairs and number states, are essential for f...
We study the physics of four-photon states generated in spontaneous parametric down-conversion with ...
In recent years, a number of theoretical and experimental demonstrations regarding the use of photon...
A pump photon in a nonlinear optical crystal may split into two highly correlated daughter photons, ...
Entanglement is a key resource in many quantum information schemes and in the last years the researc...
We demonstrate a general method of engineering the joint quantum state of photon pairs produced in s...
We discuss two possible ways to increase the dimension of a 4-qubit hyperentangled state of two phot...
Advancing quantum information processing is predicated on the preparation of ever-larger multiqubit ...
A six-qubit hyperentangled state has been realized by entangling two photons in three degrees of fre...
Multi-dimensional entangled states have been proven to be more powerful in some quantum information ...
We propose a simple experimental scheme to prepare a type of four-photon entangled state |χ〉 that ha...
Quantum entanglement exhibits various interesting features that emerge only in high-dimensional syst...
Multiphoton entanglement is the basis of many quantum communication schemes, quantum cryptographic p...
Entanglement is a key resource in many quantum information schemes andin the last years the research...
Quantum states of two photons simultaneously entangled in polarization and linear momentum, namely h...
Non-classical states of light, such as entangled photon pairs and number states, are essential for f...
We study the physics of four-photon states generated in spontaneous parametric down-conversion with ...
In recent years, a number of theoretical and experimental demonstrations regarding the use of photon...
A pump photon in a nonlinear optical crystal may split into two highly correlated daughter photons, ...
Entanglement is a key resource in many quantum information schemes and in the last years the researc...
We demonstrate a general method of engineering the joint quantum state of photon pairs produced in s...