Quantum teleportation of a four-qubit state by using six-qubit cluster state
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Publication:518762
DOI10.1007/s10773-016-2982-2zbMath1361.81031OpenAlexW2309805040MaRDI QIDQ518762
Yi-you Nie, Yuan-hua Li, Ming-huang Sang, Xian-Ping Wang
Publication date: 30 March 2017
Published in: International Journal of Theoretical Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10773-016-2982-2
Quantum measurement theory, state operations, state preparations (81P15) Quantum coherence, entanglement, quantum correlations (81P40) Quantum information, communication, networks (quantum-theoretic aspects) (81P45)
Related Items (14)
Controlled remote state preparation of an arbitrary four-qubit entangled cluster-type state using seven-qubit cluster state ⋮ Quantum teleportation of five-qubit state ⋮ Research on key technologies of controlled bidirectional quantum teleportation ⋮ Quantum teleportation of ten-qubit state based on the cluster state quantum channel ⋮ Dual input quantum teleportation ⋮ Asymmetric bidirectional hierarchical controlled quantum information transmission ⋮ Bidirectional controlled quantum information transmission by using a five-qubit cluster state ⋮ Bidirectional quantum controlled teleportation of three-qubit state by using GHZ states ⋮ Quantum teleportation of unknown seven-qubit entangled state using four-qubit entangled state ⋮ Quantum bidirectional teleportation \(2 \leftrightarrow 2\) or \(2 \leftrightarrow 3\) qubit teleportation protocol via 6-qubit entangled state ⋮ Improvement on quantum teleportation of three and four qubit states using multi-qubit cluster states ⋮ Quantum teleportation of a \(N\)-qubit entangled state by using a \((N+1)\)-qubit cluster state ⋮ Quantum teleportation of unknown seven-qubit entangled state using four-qubit entangled state ⋮ Quantum multi-proxy blind signature based on cluster state
Cites Work
- Unnamed Item
- Controlled remote state preparation protocols via AKLT states
- Joint remote state preparation between multi-sender and multi-receiver
- W state generation by adding independent single photons
- Quantum teleportation and quantum information splitting by using a genuinely entangled six-qubit state
- Controlled teleportation of an arbitrary two-particle pure or mixed state by using a five-qubit cluster state
- Quantum information splitting of an arbitrary multi-qubit GHZ-type state by using a four-qubit cluster state
- Secret sharing of a known arbitrary quantum state with noisy environment
- Teleportation of GHZ-states in QED-cavities without the explicit Bell-state measurement
- Quantum teleportation via \(GHZ\)-like state
- Teleportation of an unknown state by W states
- Joint remote state preparation for two-qubit equatorial states
- Efficient controlled quantum secure direct communication based on GHZ-like states
- Deterministic generations of quantum state with no more than six qubits
- Controlled teleportation with the control of two groups of agents via entanglement
- Controlled remote state preparation via partially entangled quantum channel
- Quantum information splitting of arbitrary two-qubit state by using four-qubit cluster state and Bell-state
- Applications of quantum cryptographic switch: various tasks related to controlled quantum communication can be performed using Bell states and permutation of particles
- Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels
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