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Continuous-variable quantum teleportation with non-Gaussian resources

Academic Article
Publication Date:
2007
abstract:
We investigate continuous variable quantum teleportation using non-Gaussian states of the radiation field as entangled resources. We compare the performance of different classes of degaussified resources, including two-mode photon-added and two-mode photon-subtracted squeezed states. We then introduce a class of two-mode squeezed Bell-like states with one-parameter dependence for optimization. These states interpolate between and include as subcases different classes of degaussified resources. We show that optimized squeezed Bell-like resources yield a remarkable improvement in the fidelity of teleportation both for coherent and nonclassical input states. The investigation reveals that the optimal non-Gaussian resources for continuous variable teleportation are those that most closely realize the simultaneous maximization of the content of entanglement, the degree of affinity with the two-mode squeezed vacuum, and the, suitably measured, amount of non-Gaussianity.
Iris type:
01.01 Articolo in rivista
Keywords:
PODOLSKY-ROSEN CHANNELS; STATES; EXCITATIONS; COMPUTATION
List of contributors:
DE SIENA, Silvio; Illuminati, Fabrizio; Dell'Anno, Fabio
Authors of the University:
ILLUMINATI FABRIZIO
Handle:
https://iris.cnr.it/handle/20.500.14243/165899
Published in:
PHYSICAL REVIEW. A
Journal
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