Controlled dense coding with symmetric state
From MaRDI portal
Publication:842662
DOI10.1007/S10773-009-0018-XzbMath1171.81332OpenAlexW2094915503MaRDI QIDQ842662
Publication date: 25 September 2009
Published in: International Journal of Theoretical Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10773-009-0018-x
Quantum computation (81P68) Coding and information theory (compaction, compression, models of communication, encoding schemes, etc.) (aspects in computer science) (68P30)
Related Items (15)
Controlled dense coding using the maximal slice states ⋮ Controlled quantum secure direct communication by entanglement distillation or generalized measurement ⋮ Controlled dense coding with a four-particle non-maximally entangled state ⋮ Controlled dense coding with four-particle entangled state ⋮ Dense coding process with imperfect encoding operations ⋮ Influence of interaction between qubits on entanglement sudden death and birth ⋮ Entanglement and geometric phase for two-particle system in nuclear magnetic resonance ⋮ Dense coding with cluster state via local measurements ⋮ Controlling on entangled decoherence by the interaction model between qubit and environment ⋮ Generating multi-particle entangled state with matter-wave interferometer ⋮ Phonon-induced quantum entanglement in diamond nanostructures ⋮ RESEARCH ON THE RELATIONSHIP BETWEEN THE SYMMETRICAL COUPLING AND THE NON-MARKOVIAN RELAXATION CHARACTERISTICS ⋮ Controlled dense coding with the \(W\) state ⋮ Controlling decoherence from fluctuating magnetic field ⋮ Controlled dense coding with non-symmetric quantum state
Cites Work
- Erratum to: ``Controlling complex dynamical networks with coupling delays to a desired orbit [Phys. Lett. A 359 (2006) 42]
- Multiparty quantum secret splitting and quantum state sharing
- QUANTUM STATE SHARING VIA THE GHZ STATE IN CAVITY QED WITHOUT JOINT MEASUREMENT
- Communication via one- and two-particle operators on Einstein-Podolsky-Rosen states
- Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels
- Experimental quantum teleportation
- Multiparty-controlled teleportation of an arbitrarym-qudit state with a pure entangled quantum channel
- Compromise of localized graviton with a small cosmological constant in Randall-Sundrum scenario
This page was built for publication: Controlled dense coding with symmetric state