Hierarchical controlled remote state preparation by using a four-qubit cluster state
DOI10.1007/s10773-018-3700-zzbMath1394.81036OpenAlexW2790598392MaRDI QIDQ726046
Peng-Cheng Ma, You-Bang Zhan, Gui-Bin Chen, Xiao-Wei Li
Publication date: 2 August 2018
Published in: International Journal of Theoretical Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10773-018-3700-z
cluster stateunitary operationprojective measurementhierarchical controlled remote state preparation
Quantum measurement theory, state operations, state preparations (81P15) Quantum coherence, entanglement, quantum correlations (81P40) Quantum information, communication, networks (quantum-theoretic aspects) (81P45) Quantum control (81Q93)
Related Items (6)
Cites Work
- Unnamed Item
- Deterministic controlled remote state preparation using partially entangled quantum channel
- Deterministic remote preparation of a four-qubit cluster-type entangled state
- Joint remote state preparation of a W-type state via W-type states
- Efficient and economic schemes for remotely preparing a four-qubit cluster-type entangled state
- Efficient remote preparation of four-qubit cluster-type entangled states with multi-party over partially entangled channels
- Controlled remote state preparation of an arbitrary two-qubit state by using GHZ states
- Hierarchical quantum information splitting with six-photon cluster states
- Dense coding and teleportation with one-dimensional cluster states
- An efficient scheme for five-party quantum state sharing of an arbitrary \(m\)-qubit state using multiqubit cluster states
- Controlled remote preparation of a two-qubit state via positive operator-valued measure and two three-qubit entanglements
- Deterministic remote preparation of a four-particle entangled W state
- Optimizing scheme for remote preparation of four-particle cluster-like entangled states
- Improving the security of multiparty quantum secret splitting and quantum state sharing
- Controlled quantum secure direct communication by Using four particle cluster states
- Controlled remote state preparation of an arbitrary two-qubit state via a six-qubit cluster state
- Quantum information splitting by using asymmetric multi-particle state
- Controlled-joint remote preparation of an arbitrary two-qubit state via non-maximally entangled channel
- Controlled remote state preparation via partially entangled quantum channel
- Schemes for splitting quantum information via tripartite entangled states
- Controlled remote state preparation of an arbitrary four-qubit entangled cluster-type state using seven-qubit cluster state
- Controlled remote preparation of an arbitrary four-qubit \(\chi\) state via partially entangled channel
- Multiparty-controlled joint remote state preparation
- Multiparty secret sharing of quantum information based on entanglement swapping
- Schemes for Splitting Quantum Information with Four-Particle Genuine Entangled States
- Quantum teleportation and state sharing using a genuinely entangled six-qubit state
- Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels
- Tripartite Arbitrary Two-Qutrit Quantum State Sharing
- PROBABILISTIC MULTIPARTY-CONTROLLED REMOTE PREPARATION OF AN ARBITRARY m-QUDIT STATE VIA POSITIVE OPERATOR-VALUED MEASUREMENT
- One-party controlled minimum remote state preparation of equatorial n-qubit states
- Quantum secret sharing
- Probabilistic Remote Preparation of a Four-Particle Entangled W State for the General Case and for All Kinds of the Special Cases
- Controlled Remote State Preparation
- Multiparty-Controlled Remote Preparation of Two-Particle State
This page was built for publication: Hierarchical controlled remote state preparation by using a four-qubit cluster state