Using Tsallis-q entropy, we introduce the generalized concept of global quantum discord, namely the q-global quantum discord, and provide its analytic evaluation for two classes of multiqubit states. We also provide a sufficient condition, for which the pairwise quantum correlations in terms of q-global quantum discord is monogamous in multiparty quantum systemsopen
We study the dynamics of multipartite quantum correlations in terms of genuinely multipart...
The relation between genuine multipartite entanglement in the pure state of a collection of N qubits...
The study of classical and quantum correlations in bipartite and multipartite systems is crucial for...
The quantum discord originally defined in terms of von Neumann entropy has been widely app...
We present a reliable algorithm to evaluate quantum discord for general two-qubit states, amending a...
Quantum discord, a kind of quantum correlation, is defined as the difference between quantum mutual ...
In [X.-W. Hou, Z.-P. Huang, S. Chen, Eur. Phys. J. D 68, 87 (2014)], Hou etal. present, using Tsalli...
Recently, it was realized that quantum discord can be seen as the minimal amount of correlations whi...
Quantum mutual information (QMI) not only displays the mutual information in the system but also dem...
The quantum discord of bipartite systems is one of the best-known measures of non-classical correlat...
We present two formulae to calculate quantum discord, a kind of quantum correlation, between a qubit...
We give a pedagogical introduction to quantum discord and discuss the problem of separation of total...
In the field of quantum information, which is subdivided into quantum computing and quantum cryptogr...
Monogamy is an intrinsic feature of quantum correlations that gives rise to several interesting quan...
Quantum discord is an optimal resource for the measure of classical and non-classical correlations a...
We study the dynamics of multipartite quantum correlations in terms of genuinely multipart...
The relation between genuine multipartite entanglement in the pure state of a collection of N qubits...
The study of classical and quantum correlations in bipartite and multipartite systems is crucial for...
The quantum discord originally defined in terms of von Neumann entropy has been widely app...
We present a reliable algorithm to evaluate quantum discord for general two-qubit states, amending a...
Quantum discord, a kind of quantum correlation, is defined as the difference between quantum mutual ...
In [X.-W. Hou, Z.-P. Huang, S. Chen, Eur. Phys. J. D 68, 87 (2014)], Hou etal. present, using Tsalli...
Recently, it was realized that quantum discord can be seen as the minimal amount of correlations whi...
Quantum mutual information (QMI) not only displays the mutual information in the system but also dem...
The quantum discord of bipartite systems is one of the best-known measures of non-classical correlat...
We present two formulae to calculate quantum discord, a kind of quantum correlation, between a qubit...
We give a pedagogical introduction to quantum discord and discuss the problem of separation of total...
In the field of quantum information, which is subdivided into quantum computing and quantum cryptogr...
Monogamy is an intrinsic feature of quantum correlations that gives rise to several interesting quan...
Quantum discord is an optimal resource for the measure of classical and non-classical correlations a...
We study the dynamics of multipartite quantum correlations in terms of genuinely multipart...
The relation between genuine multipartite entanglement in the pure state of a collection of N qubits...
The study of classical and quantum correlations in bipartite and multipartite systems is crucial for...