Quantum teleportation of an arbitrary \(N\)-qubit state via GHZ-like states
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Publication:293923
DOI10.1007/s10773-015-2798-5zbMath1338.81122OpenAlexW2228709515MaRDI QIDQ293923
Xing-tong Liu, Jian Wang, Chao-jing Tang, Bo Zhang
Publication date: 9 June 2016
Published in: International Journal of Theoretical Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10773-015-2798-5
Quantum information, communication, networks (quantum-theoretic aspects) (81P45) Quantum coding (general) (81P70)
Related Items (10)
Generalized concurrence measure for faithful quantification of multiparticle pure state entanglement using Lagrange's identity and wedge product ⋮ A multi-hop teleportation protocol of arbitrary four-qubit states through intermediate nodes ⋮ Quantum double-direction cyclic controlled communication via a thirteen-qubit entangled state ⋮ Multidirectional quantum controlled teleportation in noisy environment ⋮ Bidirectional and asymmetric controlled quantum teleportation in the three-dimensional system ⋮ Quantum teleportation protocol of arbitrary quantum states by using quantum Fourier transform ⋮ A teleportation protocol for transfer of arbitrary GHZ-states using intermediate nodes ⋮ Quantum bidirectional teleportation \(2 \leftrightarrow 2\) or \(2 \leftrightarrow 3\) qubit teleportation protocol via 6-qubit entangled state ⋮ Quantum cyclic controlled teleportation of unknown states with arbitrary number of qubits by using seven-qubit entangled channel ⋮ Quantum teleportation of a \(N\)-qubit entangled state by using a \((N+1)\)-qubit cluster state
Cites Work
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