Protecting, Enhancing and Reviving Entanglement
arXiv:0805.3325 · doi:10.1103/PhysRevA.78.044301
Abstract
We propose a strategies not only to protect but also to enhance and revive the entanglement in a double Jaynes-Cummings model. We show that such surprising features arises when Zeno-like measurements are performed during the dynamical process.
References in corpus (3)
Cited by in corpus (16)
- Multipartite non-locality in a thermalized Ising spin-chain
- Entanglement dynamics for the double Tavis-Cummings model
- Manipulation of entanglement sudden death in an all-optical setup
- Non-Markovianity during quantum Zeno effect
- Effects of cavity-cavity interaction on the entanglement dynamics of a generalized double Jaynes-Cummings model
- Experimental protection against evolution of states in a subspace via a super-Zeno scheme on an NMR quantum information processor
- Preservation of entanglement in a two-qubit-spin coupled system
- Entanglement protection in higher-dimensional systems
- Entanglement preservation on two coupled cavities
- Entanglement enhancement for two spins assisted by two phase kicks
- Preservation of entanglement in local noisy channels
- Stochastic coupling in two modes systems: the weak-strong coupling transition
- Temporal steering of entanglement decay with single-shot control
- Photon Induced Entanglement in Atom-Cavity Systems
- Tripartite Entanglement in Multimode Cavity Quantum Electrodynamics
- Temporal steering of entanglement decay with single-shot control