We provide a coherence-based approach to nonclassical behavior by means of distance measures. We develop a quantitative relation between coherence and nonclassicality quantifiers, which establish the nonclassicality as the maximum quantum-coherence achievable. We compute the coherence of several representative examples and discuss whether the theory may be extended to reference observables with continuous spectra
The search for a simple description of fundamental physical processes is an important part of quantu...
It is shown that divergences in the susceptibility of any geometric measure of nonclassicality are s...
We introduce a method of characterization of non-Markovianity using coherence of a system interactin...
We provide a coherence-based approach to nonclassical behavior by means of distance measures. We dev...
In this paper we consider the quantum resources required to maximize the mean values of any nontrivi...
The quantum nature of the state of a bosonic quantum field may manifest itself in its entanglement, ...
Quantum coherence is an essential ingredient in quantum information processing and plays a central r...
Quantifying coherence is an essential endeavour for both quantum foundations and quantum technologie...
Quantifying coherence is an essential endeavour for both quantum foundations and quantum technologie...
In quantum mechanics, quantum coherence of a state relative to a quantum measurement can be identifi...
The nonclassicality of quantum states is a fundamental resource for quantum technologies and quantum...
One of the fundamental features that separates quantum physics from classical physics is the idea of...
Identifying nonclassicality unambiguously and inexpensively is a long-standing open challenge in phy...
In the quantitative theory of quantum coherence, the amount of coherence is defined as the distance ...
International audienceWe introduce a new distance-based measure for the nonclassicality of the state...
The search for a simple description of fundamental physical processes is an important part of quantu...
It is shown that divergences in the susceptibility of any geometric measure of nonclassicality are s...
We introduce a method of characterization of non-Markovianity using coherence of a system interactin...
We provide a coherence-based approach to nonclassical behavior by means of distance measures. We dev...
In this paper we consider the quantum resources required to maximize the mean values of any nontrivi...
The quantum nature of the state of a bosonic quantum field may manifest itself in its entanglement, ...
Quantum coherence is an essential ingredient in quantum information processing and plays a central r...
Quantifying coherence is an essential endeavour for both quantum foundations and quantum technologie...
Quantifying coherence is an essential endeavour for both quantum foundations and quantum technologie...
In quantum mechanics, quantum coherence of a state relative to a quantum measurement can be identifi...
The nonclassicality of quantum states is a fundamental resource for quantum technologies and quantum...
One of the fundamental features that separates quantum physics from classical physics is the idea of...
Identifying nonclassicality unambiguously and inexpensively is a long-standing open challenge in phy...
In the quantitative theory of quantum coherence, the amount of coherence is defined as the distance ...
International audienceWe introduce a new distance-based measure for the nonclassicality of the state...
The search for a simple description of fundamental physical processes is an important part of quantu...
It is shown that divergences in the susceptibility of any geometric measure of nonclassicality are s...
We introduce a method of characterization of non-Markovianity using coherence of a system interactin...