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Continuous-Variable Entangled States of Light carrying Orbital Angular Momentum

Academic Article
Publication Date:
2018
abstract:
The orbital angular momentum of light, unlike spin, is an infinite-dimensional discrete variable and may hence offer enhanced performances for encoding, transmitting, and processing information in the quantum regime. Hitherto, this degree of freedom of light has been studied mainly in the context of quantum states with definite number of photons. On the other hand, field-quadrature continuous-variable quantum states of light allow implementing many important quantum protocols not accessible with photon-number states. Here, we present the first generation and complete experimental characterization of a bipartite continuous-variable Gaussian entangled state endowed with non-zero orbital angular momentum. A q-plate is used to transfer the continuous-variable entanglement initially generated in polarization into orbital angular momentum. We then apply a reconfigurable
Iris type:
01.01 Articolo in rivista
Keywords:
orbital angular momentum of light; unlike spin; is an infinite-dimensional discrete variable and may hence offer enhanced performances for encoding; transmi
List of contributors:
Marrucci, Lorenzo
Handle:
https://iris.cnr.it/handle/20.500.14243/347283
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