Remote preparation of four-qubit states via two-qubit maximally entangled states
DOI10.1007/S11128-019-2205-XzbMath1417.81072OpenAlexW2915328113MaRDI QIDQ670044
Yang Xue, Lei Shi, Longqiang Yu, Jiahua Wei, Hang Hu, Kaihang Zhou, Xinyu Da, Li-hua Ma
Publication date: 15 March 2019
Published in: Quantum Information Processing (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s11128-019-2205-x
Quantum measurement theory, state operations, state preparations (81P15) Error probability in coding theory (94B70) Quantum coherence, entanglement, quantum correlations (81P40) Quantum information, communication, networks (quantum-theoretic aspects) (81P45) Quantum control (81Q93)
Related Items (3)
Cites Work
- Optimal joint remote state preparation of equatorial states
- Quantum teleportation of three and four-qubit state using multi-qubit cluster states
- Two efficient schemes for probabilistic remote state preparation and the combination of both schemes
- Deterministic remote preparation of an arbitrary qubit state using a partially entangled state and finite classical communication
- Controlled remote state preparation of an arbitrary two-qubit state by using GHZ states
- Deterministic tripartite controlled remote state preparation
- Quantum teleportation of eight-qubit state via six-qubit cluster state
- Joint remote state preparation of arbitrary two- and three-particle states
- Enhancing the fidelity of remote state preparation by partial measurements
- Asymmetric controlled bidirectional remote state preparation by using a ten-qubit entangled state
- Remote preparation of an arbitrary multi-qubit state via two-qubit entangled states
- Measurement-device-independent quantum key distribution with multiple crystal heralded source with post-selection
- Deterministic joint remote preparation of arbitrary two- and three-qubit entangled states
- Controlled remote state preparation via partially entangled quantum channel
- Controlled simultaneous teleportation and dense coding
- Two novel schemes for probabilistic remote state preparation and the physical realization via the linear optics
- Remote Preparation of Quantum States
- Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels
- Probabilistic controlled remote state preparation of an arbitrary two-qubit state via partially entangled states with multi parties
- Probabilistic Remote Preparation of a Four-Particle Entangled W State for the General Case and for All Kinds of the Special Cases
This page was built for publication: Remote preparation of four-qubit states via two-qubit maximally entangled states