Physical Review A · 2013 · 25 citations · 57 references
EngineeringQuantum ComputingQuantum EntanglementQuantum SciencePhotonicsQuantum SecurityPhysicsLocal Photon SubtractionEntanglement DecreasesQuantum InformationPhoton StatisticNon-gaussian Entangled StateQuantum DecoherenceQuantum OpticQuantum TeleportationNatural SciencesContinuous VariablesQuantum DevicesQuantum CommunicationQuantum NetworkingEntanglement Characteristics
We investigate how the entanglement characteristics of a non-Gaussian entangled state are increased or decreased by a local photon subtraction operation. The non-Gaussian entangled state is generated by injecting a single-mode non-Gaussian state and a vacuum state into a 50:50 beam splitter. We consider a photon-added coherent state ${\stackrel{\ifmmode \hat{}\else \^{}\fi{}}{a}}^{\ifmmode\dagger\else\textdagger\fi{}}|\ensuremath{\alpha}\ensuremath{\rangle}$ and an odd coherent state $|\ensuremath{\alpha}\ensuremath{\rangle}\ensuremath{-}|\ensuremath{-}\ensuremath{\alpha}\ensuremath{\rangle}$ as a single-mode non-Gaussian state. In the regime of small $|\ensuremath{\alpha}|$, we show that the performance of quantum teleportation and the second-order Einstein-Podolsky-Rosen-type correlation can both be enhanced, whereas the degree of entanglement decreases, for the output state when a local photon subtraction operation is applied to the non-Gaussian entangled state. The counterintuitive effect is more prominent in the limit of $|\ensuremath{\alpha}|\ensuremath{\sim}0$.
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Concentrating partial entanglement by local operations
Charles H. Bennett, H. J. Bernstein, Sandu Popescu et al. · Physical Review A · 1996 · 3K citations · Full text
Inseparability Criterion for Continuous Variable Systems
L.-M. Duan, G. Giedke, J. I. Cirac et al. · Physical Review Letters · 2000 · 2K citations · Full text
Inseparability Criterion, Engineering, Distributed Parameter System +9