Quantum multicast protocol and multi-output remote operation implementation via four-particle cluster state
DOI10.1007/s10773-023-05446-1OpenAlexW4386222124MaRDI QIDQ6049657
Jia-Yin Peng, Fan Wu, Liang Tang, Jian-Gang Tang
Publication date: 15 September 2023
Published in: International Journal of Theoretical Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10773-023-05446-1
four-particle cluster statemulti-output ROI for arbitrary operationmulti-output ROI for partially unknown operationquantum multicastsingle-particle operation
Classification and discrimination; cluster analysis (statistical aspects) (62H30) Quantum coherence, entanglement, quantum correlations (81P40) LOCC, teleportation, dense coding, remote state operations, distillation (81P48) Quantum channels, fidelity (81P47)
Cites Work
- Deterministic controlled bidirectional remote state preparation via a six-qubit maximally entangled state
- Deterministic remote two-qubit state preparation in dissipative environments
- Bidirectional quantum states sharing
- Faithful remote information concentration based on the optimal universal \(1\to 2\) telecloning of arbitrary two-qubit states
- Controlled remote state preparation of an arbitrary two-qubit state by using GHZ states
- Asymmetric multi-party quantum state sharing of an arbitrary \(m\)-qubit state
- Bidirectional controlled remote implementation of an arbitrary single qubit unitary operation with EPR and cluster states
- Bidirectional controlled joint remote state preparation
- Applied quantum cryptography
- Quantum sharing an unknown multi-particle state via POVM
- Cyclic joint remote state preparation in noisy environment
- Annular controlled teleportation
- Remote preparation of general one-, two- and three-qubit states via \(\chi \)-type entangled states
- Double-direction cyclic controlled remote implementation of partially known quantum operations
- Controlled quantum broadcast and multi-cast communications of complex coefficient single-qubit states
- Cyclic teleportation in noisy channel with nondemolition parity analysis and weak measurement
- Multiparty multicast schemes for remote state preparation of complex coefficient quantum states via partially entangled channels
- Cyclic remote state preparation
- High-capacity (2,3) threshold quantum secret sharing based on asymmetric quantum lossy channels
- Perfect controlled joint remote state preparation of arbitrary multi-qubit states independent of entanglement degree of the quantum channel
- FLEXIBLE DETERMINISTIC JOINT REMOTE STATE PREPARATION OF SOME STATES
- REMOTE INFORMATION CONCENTRATION VIA FOUR-PARTICLE CLUSTER STATE AND BY POSITIVE OPERATOR-VALUE MEASUREMENT
- Quantum cloning
- Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels
- Local implementation of nonlocal operations with block forms
- Quantum remote control: Teleportation of unitary operations
- Quantum secret sharing
- Multiparty-controlled teleportation of an arbitrarym-qudit state with a pure entangled quantum channel
This page was built for publication: Quantum multicast protocol and multi-output remote operation implementation via four-particle cluster state