Quantum correlations in a composite system can be measured by resorting to a geometric approach, according to which the distance from the state of the system to a suitable set of classically correlated states is considered. Here we show that all distance functions, which respect natural assumptions of invariance under transposition, convexity, and contractivity under quantum channels, give rise to geometric quantifiers of quantum correlations which exhibit the peculiar freezing phenomenon, i.e., remain constant during the evolution of a paradigmatic class of states of two qubits each independently interacting with a non-dissipative decohering environment. Our results demonstrate from first principles that freezing of geometric quantum corre...
The distance between a quantum state and its closest state not having a certain property has been us...
The distance between a quantum state and its closest state not having a certain property has been us...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...
Quantum correlations in a composite system can be measured by resorting to a geometric approach, acc...
Abstract. Quantum correlations in a composite system can be measured by resorting to a geometric app...
We investigate and compare three distinguished geometric measures of bipartite quantum correlations ...
We show that the phenomenon of frozen discord, exhibited by specific classes of two-qubit states und...
We show that the phenomenon of frozen discord, exhibited by specific classes of two-qubit states und...
Composite quantum systems can be in generic states characterized not only by entanglement but also b...
We apply the modified Brodutch and Modi method of constructing geometric measures of correlations to...
We extend the Hilbert-Schmidt (square norm) distance, previously used to define the geometric quantu...
We extend the Hilbert-Schmidt (square norm) distance, previously used to define the geometric quantu...
We investigate and compare three distinguished geometric measures of bipartite quantum correlations ...
International audienceWe investigate and compare three distinguished geometric measures of bipartite...
Abstract. We propose a modified metric based on the Hilbert-Schmidt norm and adopt it to define a re...
The distance between a quantum state and its closest state not having a certain property has been us...
The distance between a quantum state and its closest state not having a certain property has been us...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...
Quantum correlations in a composite system can be measured by resorting to a geometric approach, acc...
Abstract. Quantum correlations in a composite system can be measured by resorting to a geometric app...
We investigate and compare three distinguished geometric measures of bipartite quantum correlations ...
We show that the phenomenon of frozen discord, exhibited by specific classes of two-qubit states und...
We show that the phenomenon of frozen discord, exhibited by specific classes of two-qubit states und...
Composite quantum systems can be in generic states characterized not only by entanglement but also b...
We apply the modified Brodutch and Modi method of constructing geometric measures of correlations to...
We extend the Hilbert-Schmidt (square norm) distance, previously used to define the geometric quantu...
We extend the Hilbert-Schmidt (square norm) distance, previously used to define the geometric quantu...
We investigate and compare three distinguished geometric measures of bipartite quantum correlations ...
International audienceWe investigate and compare three distinguished geometric measures of bipartite...
Abstract. We propose a modified metric based on the Hilbert-Schmidt norm and adopt it to define a re...
The distance between a quantum state and its closest state not having a certain property has been us...
The distance between a quantum state and its closest state not having a certain property has been us...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...