We use spatial light modulators (SLMs) to measure correlations between arbitrary superpositions of orbital angular momentum (OAM) states generated by spontaneous parametric down-conversion. Our technique allows us to fully access a two-dimensional OAM subspace described by a Bloch sphere, within the higher-dimensional OAM Hilbert space. We quantify the entanglement through violations of a Bell-type inequality for pairs of modal superpositions that lie on equatorial, polar, and arbitrary great circles of the Bloch sphere. Our work shows that SLMs can be used to measure arbitrary spatial states with a fidelity sufficient for appropriate quantum information processing systems
Any practical experiment utilizing the innate D-dimensional entanglement of the orbital angular mome...
Any practical experiment utilizing the innate D-dimensional entanglement of the orbital angular mome...
We use spatial light modulators to observe the quantum entanglement of down-converted photon pairs. ...
We use spatial light modulators (SLMs) to measure correlations between arbitrary superpositions of o...
We use spatial light modulators (SLMs) to measure correlations between arbitrary superpositions of o...
We observe entanglement between photons in controlled super-position states of orbital angular momen...
We observe entanglement between photons in controlled superposition states of orbital angular moment...
Orbital angular momentum (OAM) is one of the most recently discovered properties of light, and it is...
Orbital angular momentum (OAM) is one of the most recently discovered properties of light, and it is...
Entanglement in higher dimensions is an attractive concept that is a chal- lenge to realise experime...
We observe entanglement between photons in controlled superposition states of orbital angular moment...
We observe entanglement between photons in controlled super-position states of orbital angular momen...
Entanglement in higher dimensions is an attractive concept that is a chal- lenge to realise experime...
We report a high fidelity tomographic reconstruction of the quantum state of photon pairs generated ...
We report a high fidelity tomographic reconstruction of the quantum state of photon pairs generated ...
Any practical experiment utilizing the innate D-dimensional entanglement of the orbital angular mome...
Any practical experiment utilizing the innate D-dimensional entanglement of the orbital angular mome...
We use spatial light modulators to observe the quantum entanglement of down-converted photon pairs. ...
We use spatial light modulators (SLMs) to measure correlations between arbitrary superpositions of o...
We use spatial light modulators (SLMs) to measure correlations between arbitrary superpositions of o...
We observe entanglement between photons in controlled super-position states of orbital angular momen...
We observe entanglement between photons in controlled superposition states of orbital angular moment...
Orbital angular momentum (OAM) is one of the most recently discovered properties of light, and it is...
Orbital angular momentum (OAM) is one of the most recently discovered properties of light, and it is...
Entanglement in higher dimensions is an attractive concept that is a chal- lenge to realise experime...
We observe entanglement between photons in controlled superposition states of orbital angular moment...
We observe entanglement between photons in controlled super-position states of orbital angular momen...
Entanglement in higher dimensions is an attractive concept that is a chal- lenge to realise experime...
We report a high fidelity tomographic reconstruction of the quantum state of photon pairs generated ...
We report a high fidelity tomographic reconstruction of the quantum state of photon pairs generated ...
Any practical experiment utilizing the innate D-dimensional entanglement of the orbital angular mome...
Any practical experiment utilizing the innate D-dimensional entanglement of the orbital angular mome...
We use spatial light modulators to observe the quantum entanglement of down-converted photon pairs. ...