Maximally entangled mixed states of two atoms trapped inside an optical cavity
arXiv:quant-ph/0507072 · doi:10.1088/1751-8113/42/24/245302
Abstract
In some off-resonant cases, the reduced density matrix of two atoms symmetrically coupled with an optical cavity can very approximately approach to maximally entangled mixed states or maximal Bell violation mixed states in their evolution. The influence of phase decoherence on the generation of maximally entangled mixed state is also discussed. PACS numbers: 03.67.-a, 03.65.Ud
7 pages, 4 figures, Latex, have a major revision of content,
References in corpus (11)
- Maximal entanglement versus entropy for mixed quantum states
- Robust creation of entanglement between ions in spatially separate cavities
- Cavity QED and quantum information processing with "hot" trapped atoms
- Unconditional preparation of entanglement between atoms in cascaded optical cavities
- Maximally entangled mixed states: Creation and concentration
- Measurement induced entanglement and quantum computation with atoms in optical cavities
- Generation of many-particle entanglement in an ion trap by adiabatic ground-state transitions
- Quasi-deterministic generation of entangled atoms in a cavity
- Ultrafast deterministic generation of entanglement in a time-dependent asymmetric two-qubit-cavity system
- Dynamics of quantum correlations and linear entropy in a multi-qubit-cavity system
- Generation of maximally entangled mixed states of two atoms via on-resonance asymmetric atom-cavity couplings