A nearly deterministic scheme for generating \(\chi \)-type entangled states with weak cross-Kerr nonlinearities
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Publication:352998
DOI10.1007/s11128-012-0481-9zbMath1267.81061OpenAlexW2080028642MaRDI QIDQ352998
Ya-Jun Gao, Xiao-Ming Xiu, Li Dong, Xue-Xi Yi
Publication date: 5 July 2013
Published in: Quantum Information Processing (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s11128-012-0481-9
Lasers, masers, optical bistability, nonlinear optics (78A60) Quantum coherence, entanglement, quantum correlations (81P40)
Related Items (18)
Enlarge the scale of W state by connecting multiple existed W states ⋮ Entanglement concentration for arbitrary four-photon cluster state assisted with single photons ⋮ Efficient entanglement concentration for concatenated Greenberger-Horne-Zeilinger state with the cross-Kerr nonlinearity ⋮ Teleportation of a general two-photon state employing a polarization-entangled \(\chi\) state with nondemolition parity analyses ⋮ Generating entangled state between the signal modes in forward three-wave mixing ⋮ Optically controlled quantum gates for three spin qubits in quantum dot-microcavity coupled systems ⋮ Generation of three-photon polarization-entangled decoherence-free states ⋮ Entanglement and spin squeezing in multiparticle conversion system ⋮ Generating entangled state with parametric amplifier ⋮ Effect of noise on deterministic remote preparation of an arbitrary two-qudit state by using a four-qudit χ-type state as the quantum channel ⋮ Linear-optics-based entanglement concentration of four-photon \(\chi\)-type states for quantum communication network ⋮ Deterministic transmission of an arbitrary single-photon polarization state through bit-flip error channel ⋮ Multi-party quantum state sharing of an arbitrary multi-qubit state via \(\chi\)-type entangled states ⋮ Remote quantum information concentration via weak cross-Kerr nonlinearity ⋮ Secure simultaneous dense coding using \(\chi \)-type entangled state ⋮ A GENERATION SCHEME OF THE DISTRIBUTED FOUR-PHOTON CLUSTER-TYPE POLARIZATION-ENTANGLED STATES EXPLOITING THE INTEGRATION OF ENTANGLEMENT GATES AND THE CONTROLLED PHASE GATE ⋮ Two-step measurement of the concurrence for hyperentangled state ⋮ Preparation of six-photon cluster state and quantum state sharing of unknown two-photon state based on weak cross-Kerr nonlinearity
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