Evolution of quantum correlations in a two-atom system
arXiv:1210.5827 · doi:10.1088/0031-8949/2013/T153/014059
Abstract
We discuss the evolution of quantum correlations for a system of two two-level atoms interacting with a common reservoir. The Markovian master equation is used to describe the evolution of various measures of quantum correlations.
Submitted to the proceeding od the CEWQO 2012 Conference
References in corpus (10)
- Finite-Time Disentanglement via Spontaneous Emission
- Necessary and sufficient condition for non-zero quantum discord
- Non-Markovian effects on the dynamics of entanglement
- Dark periods and revivals of entanglement in a two qubit system
- Quantum discord for general two--qubit states: Analytical progress
- Delayed (sudden) birth of entanglement
- Optimal measurements to access classical correlations of two-qubit states
- Non-Markovian disentanglement dynamics of two-qubit system
- Decoherence Free Subspace and entanglement by interaction with a common squeezed bath
- Decoherence of two qubits in a non-Markovian reservoir without rotating-wave approximation
Cited by in corpus (5)
- Entanglement dynamics for Unruh-DeWitt detectors interacting with massive scalar fields: The Unruh and anti-Unruh effects
- Effective master equations for two accelerated qubits
- Collapse-revival of quantum discord and entanglement
- Pairwise quantum discord for a symmetric multi-qubit system in different types of noisy channels
- A simple model for exploring the role of quantum coherence and the environment in excitonic energy transfer