Efficient entanglement concentration for arbitrary less-entangled NOON states
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Publication:1952638
DOI10.1007/s11128-012-0472-xzbMath1264.81064OpenAlexW2081334620MaRDI QIDQ1952638
Longyan Gong, Lan Zhou, Yu-Bo Sheng, Wei-Wen Cheng
Publication date: 31 May 2013
Published in: Quantum Information Processing (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s11128-012-0472-x
Quantum coherence, entanglement, quantum correlations (81P40) Quantum information, communication, networks (quantum-theoretic aspects) (81P45)
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Maximal entanglement concentration for a set of \((n+1)\)-qubit states ⋮ Efficient entanglement concentration for concatenated Greenberger-Horne-Zeilinger state with the cross-Kerr nonlinearity ⋮ Efficient hyperentanglement concentration for \(N\)-particle Greenberger-Horne-Zeilinger state assisted by weak cross-Kerr nonlinearity ⋮ Efficient entanglement concentration for electron-spin W state with the charge detection ⋮ Protecting single-photon entanglement with practical entanglement source ⋮ Complete deterministic analyzer for multi-electron Greenberger-Horne-Zeilinger states assisted by double-side optical microcavities ⋮ Distillation of arbitrary single-photon entanglement assisted with polarized Bell states ⋮ Entanglement concentration for concatenated Greenberger-Horne-Zeilinger state ⋮ Practical entanglement concentration for entangled coherent states ⋮ Entanglement concentration of partially entangled multi-electron spin W states with CNOT gates ⋮ Two-step entanglement concentration for arbitrary electronic cluster state ⋮ Deterministic transmission of an arbitrary single-photon polarization state through bit-flip error channel ⋮ Efficient entanglement concentration for arbitrary less-hyperentanglement multi-photon W states with linear optics ⋮ Efficient entanglement concentration for partially entangled cluster states with weak cross-Kerr nonlinearity ⋮ Remote quantum information concentration via weak cross-Kerr nonlinearity ⋮ Two-step measurement of the concurrence for hyperentangled state ⋮ Controlled remote state preparation via partially entangled quantum channel ⋮ Quantum entanglement concentration based on nonlinear optics for quantum communications ⋮ Preparation of six-photon cluster state and quantum state sharing of unknown two-photon state based on weak cross-Kerr nonlinearity ⋮ Protocols and quantum circuits for implementing entanglement concentration in cat state, GHZ-like state and nine families of 4-qubit entangled states
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