Article ID Journal Published Year Pages File Type
1855946 Annals of Physics 2016 25 Pages PDF
Abstract

•Various interesting behaviors of quantum and classical correlations are observed in an open exactly solvable model.•The important effects of the bath structure on quantum and classical correlations are revealed.•The one-to-one correspondence between the type of dynamical behavior of quantum discord and the initial state is given.•Quantum correlations are given in the presence of initial qubits–bath correlations.

Based on an open exactly solvable system coupled to an environment with nontrivial spectral density, we connect the features of quantum and classical correlations with some features of the environment, initial states of the system, and the presence of initial system–environment correlations. Some interesting features not revealed before are observed by changing the structure of environment, the initial states of system, and the presence of initial system–environment correlations. The main results are as follows. (1) Quantum correlations exhibit temporary freezing and permanent freezing even at high temperature of the environment, for which the necessary and sufficient conditions are given by three propositions. (2) Quantum correlations display a transition from temporary freezing to permanent freezing by changing the structure of environment. (3) Quantum correlations can be enhanced all the time, for which the condition is put forward. (4) The one-to-one dependency relationship between all kinds of dynamic behaviors of quantum correlations and the initial states of the system as well as environment structure is established. (5) In the presence of initial system–environment correlations, quantum correlations under local environment exhibit temporary multi-freezing phenomenon. While under global environment they oscillate, revive, and damp, an explanation for which is given.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Physics and Astronomy (General)
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