Uncertainty relations capture the essence of the inevitable randomness associated with the outcomes of two incompatible quantum measurements. Recently, Berta have shown that the lower bound on the uncertainties of the measurement outcomes depends on the correlations between the observed system and an observer who possesses a quantum memory. If the system is maximally entangled with its memory, the outcomes of two incompatible measurements made on the system can be predicted precisely. Here, we obtain an uncertainty relation that tightens the lower bound of Berta by incorporating an additional term that depends on the quantum discord and the classical correlations of the joint state of the observed system and the quantum memory. We discuss s...
Heisenberg's uncertainty principle forms a fundamental element of quantum mechanics. Uncertainty rel...
Quantum discord, a kind of quantum correlation, is defined as the difference between quantum mutual ...
Entropic uncertainty and entanglement are two distinct aspects of quantum mechanical procedures. To ...
Uncertainty relations capture the essence of the inevitable randomness associated with the outcomes ...
The uncertainty principle, originally formulated by Heisenberg1, clearly illustrates the difference ...
We postulate the existence of a universal uncertainty relation between the quantum and classical mut...
How much of the uncertainty in predicting measurement outcomes for noncommuting quantum observables ...
As a very fundamental principle in quantum physics, uncertainty principle has been studied intensive...
Two of the most intriguing features of quantum physics are the uncertainty principle and the occurre...
Heisenberg's uncertainty principle implies that if one party (Alice) prepares a system and randomly ...
Recent findings suggest, separable states, which are otherwise of no use in entanglement dependent t...
Quantum mechanics predicts that measurements of incompatible observables carry a minimum uncertainty...
We derive a new memory-assisted entropic uncertainty relation for non-degenerate Hermitian observabl...
Uncertainty relations take a crucial and fundamental part in the frame of quantum theory, and are br...
Heisenberg’s uncertainty principle forms a fundamental element of quantum mechanics. Uncertainty rel...
Heisenberg's uncertainty principle forms a fundamental element of quantum mechanics. Uncertainty rel...
Quantum discord, a kind of quantum correlation, is defined as the difference between quantum mutual ...
Entropic uncertainty and entanglement are two distinct aspects of quantum mechanical procedures. To ...
Uncertainty relations capture the essence of the inevitable randomness associated with the outcomes ...
The uncertainty principle, originally formulated by Heisenberg1, clearly illustrates the difference ...
We postulate the existence of a universal uncertainty relation between the quantum and classical mut...
How much of the uncertainty in predicting measurement outcomes for noncommuting quantum observables ...
As a very fundamental principle in quantum physics, uncertainty principle has been studied intensive...
Two of the most intriguing features of quantum physics are the uncertainty principle and the occurre...
Heisenberg's uncertainty principle implies that if one party (Alice) prepares a system and randomly ...
Recent findings suggest, separable states, which are otherwise of no use in entanglement dependent t...
Quantum mechanics predicts that measurements of incompatible observables carry a minimum uncertainty...
We derive a new memory-assisted entropic uncertainty relation for non-degenerate Hermitian observabl...
Uncertainty relations take a crucial and fundamental part in the frame of quantum theory, and are br...
Heisenberg’s uncertainty principle forms a fundamental element of quantum mechanics. Uncertainty rel...
Heisenberg's uncertainty principle forms a fundamental element of quantum mechanics. Uncertainty rel...
Quantum discord, a kind of quantum correlation, is defined as the difference between quantum mutual ...
Entropic uncertainty and entanglement are two distinct aspects of quantum mechanical procedures. To ...