We demonstrate experimental generation of spatially entangled photon pairs by spontaneous parametric down-conversion (SPDC) using a partial spatially coherent pump beam. By varying the spatial coherence of the pump, we show its influence on the down-converted photon's spatial correlations and on its degree of entanglement, in excellent agreement with theory. We then exploit this property to produce pairs of photons with a specific degree of entanglement by tailoring of the pump coherence length. This work thus unravels the fundamental transfer of coherence occurring in SPDC processes, and provides a simple experimental scheme to generate photon pairs with a well-defined degree of spatial entanglement, which may be useful for quantum communi...
We theoretically study the polarization entanglement and the non-local correlations manifested by bi...
From quantum computation to quantum key distribution, many quantum-enhanced applications rely on the...
From quantum computation to quantum key distribution, many quantum-enhanced applications rely on the...
International audienceThe ability to engineer the properties of quantum optical states is essential ...
We examine experimentally how the degree of position-momentum entanglement of photon pairs depends o...
We examine experimentally how the degree of position-momentum entanglement of photon pairs depends o...
Abstract The generation of two photon fields, to date, has been demonstrated utilizing a fully coher...
The ability to engineer the properties of quantum optical states is essential for quantum informatio...
By making use of the spatial shape of paired photons, parametric down-conversion allows the generati...
By making use of the spatial shape of paired photons, parametric down-conversion allows the generati...
We put forward an approach for manipulating the spectral profile of entangled photon pairs. Such spe...
Correlations between the entire conical spatial modes of signal and idler beams in a type II spontan...
We put forward an approach for manipulating the spectral profile of entangled photon pairs. Such spe...
The spatial and spectral properties of entangled photons from spontaneous parametric down-conversion...
<p>Presented at the Solvay workshop “Bits, Quanta, and Complex Systems”. Brussels -<br>Belgium, Apri...
We theoretically study the polarization entanglement and the non-local correlations manifested by bi...
From quantum computation to quantum key distribution, many quantum-enhanced applications rely on the...
From quantum computation to quantum key distribution, many quantum-enhanced applications rely on the...
International audienceThe ability to engineer the properties of quantum optical states is essential ...
We examine experimentally how the degree of position-momentum entanglement of photon pairs depends o...
We examine experimentally how the degree of position-momentum entanglement of photon pairs depends o...
Abstract The generation of two photon fields, to date, has been demonstrated utilizing a fully coher...
The ability to engineer the properties of quantum optical states is essential for quantum informatio...
By making use of the spatial shape of paired photons, parametric down-conversion allows the generati...
By making use of the spatial shape of paired photons, parametric down-conversion allows the generati...
We put forward an approach for manipulating the spectral profile of entangled photon pairs. Such spe...
Correlations between the entire conical spatial modes of signal and idler beams in a type II spontan...
We put forward an approach for manipulating the spectral profile of entangled photon pairs. Such spe...
The spatial and spectral properties of entangled photons from spontaneous parametric down-conversion...
<p>Presented at the Solvay workshop “Bits, Quanta, and Complex Systems”. Brussels -<br>Belgium, Apri...
We theoretically study the polarization entanglement and the non-local correlations manifested by bi...
From quantum computation to quantum key distribution, many quantum-enhanced applications rely on the...
From quantum computation to quantum key distribution, many quantum-enhanced applications rely on the...