The entanglement character between atoms in the non-degenerate two photons Tavis-Cummings model
arXiv:quant-ph/0703068 · doi:10.1016/j.optcom.2007.03.022
Abstract
The entanglement character including the so-called sudden death effect between atoms in the non-degenerate two photons Tavis-Cummings model is studied by means of concurrence. The results show that the so-called sudden death effect occurs only for some kind of initial states. In other words, the phenomenon is sensitive to the initial conditions. One can expect the resurrection of the original entanglement to occur in a periodic way following each sudden death event. The length of the time interval for the zero entanglement is dependent on not only the degree of entanglement of the initial state but also the initial state. And the influence of dipole-dipole interaction and different atomic initial states on entanglement between atoms are discussed. The sudden death effect can be weakened by the introducing of dipole-dipole interaction.
1tex and 2 eps figures. accepted by Optics Communications
References in corpus (7)
- Finite-Time Disentanglement via Spontaneous Emission
- Dark periods and revivals of entanglement in a two qubit system
- Sudden Death of Entanglement of Two Jaynes-Cummings Atoms
- Multipartite entanglement in spin chains
- Energy as an Entanglement Witness for Quantum Many-Body Systems
- Complete disentanglement by partial pure dephasing
- Role of Bell Singlet State in the Suppression of Disentanglement
Cited by in corpus (8)
- Do all states undergo sudden death of entanglement at finite temperature?
- Genuinely Multipartite Concurrence of N-qubit X-matrices
- Sudden death of distillability in qutrit-qutrit systems
- Breakdown of the rotating-wave approximation in entanglement description of spin anti-correlated states
- Manipulating entanglement sudden death in two coupled two-level atoms interacting off-resonance with a radiation field: an exact treatment
- Continuous Quantum Error Correction Through Local Operations
- Asymptotic entanglement sudden death in two atoms with dipole-dipole and Ising interactions coupled to a radiation field at non-zero detuning
- Generation and sudden death of entanglement in qubit-qutrit systems in depolarizing noise