Teleportation for atomic entangled state by entanglement swapping with separate measurements in cavity QED
arXiv:quant-ph/0508040 · doi:10.1016/j.optcom.2005.08.003
Abstract
Experimentally feasible scheme for teleportation of atomic entangled state via entanglement swapping is proposed in cavity quantum electrodynamics (QED) without joint Bell-state measurement (BSM). In the teleportation processes the interaction between atoms and a single-mode nonresonant cavity with the assistance of a strong classical driving field substitute the joint measurements. The discussion of the scheme indicates that it can be realized by current technologies.
5 pages, no figure
References in corpus (7)
- Experimental quantum teleportation
- Coherent control of an atomic collision in a cavity
- Generation of entangled states for many multilevel atoms in a thermal cavity and ions in thermal motion
- Multipartite entanglement for entanglement teleportation
- Total Teleportation of an Entangled State
- Teleportation with insurance of an entangled atomic state via cavity decay
- Entanglement teleportation via Bell Mixture
Cited by in corpus (5)
- Sudden death, birth and stable entanglement in a two-qubit Heisenberg XY spin chain
- Quantum repeater protocol using an arrangement of QED-optomechanical hybrid systems
- Partial teleportation of entangled atomic states
- Quantum repeater using three-level atomic states in the presence of dissipation: stability of entanglement
- Quantum Discord Dynamics for Two-Level Atom Initially in Thermal Equilibrium Interacting with n-Photon State