Nonlinear coupler operating on Werner-like states - entanglement creation, its enhancement and preservation
arXiv:1406.0414 · doi:10.1364/JOSAB.31.001290
Abstract
We discuss a model of two nonlinear Kerr-like oscillators, mutually coupled and excited by parametric process. We show that the system's evolution, starting from Werner-like states, remains closed within a small set of two-mode n-photon states the system, and pure two-qubit entangled state can be generated. For some initial Werner-like states delayed entanglement generation can be observed. We investigate the influence of two damping mechanisms on the system's evolution. We show that for the both cases, the entanglement can survive despite the presence of damping, and the effects of sudden entanglement death and its rebirth can appear in the system.
References in corpus (6)
- Finite-Time Disentanglement via Spontaneous Emission
- Dark periods and revivals of entanglement in a two qubit system
- Delayed (sudden) birth of entanglement
- Two-photon and three-photon blockades in driven nonlinear systems
- Entanglement oscillations in non-Markovian quantum channels
- Generation of Three-Qubit Entangled W-State by Nonlinear Optical State Truncation