The nonlocal behavior of quantum mechanics can be used to generate guaranteed fresh randomness from an untrusted device that consists of two nonsignalling components; since the generation process requires some initial fresh randomness to act as a catalyst, one also speaks of randomness expansion. R. Colbeck and A. Kent [J. Phys. A 44, 095305 (2011)] proposed the first method for generating randomness from untrusted devices, but without providing a rigorous analysis. This was addressed subsequently by S. Pironio et al. [Nature (London) 464, 1021 (2010)], who aimed at deriving a lower bound on the min-entropy of the data extracted from an untrusted device based only on the observed nonlocal behavior of the device. Although that article succee...
4+18 pages, 2 figuresInternational audienceTwo parties sharing entangled quantum systems can generat...
A recent sequence of works, initially motivated by the study of the nonlocal properties of entanglem...
Randomness is a central feature of quantum mechanics and an invaluable resource for both classical a...
The nonlocal behavior of quantum mechanics can be used to generate guaranteed fresh randomness from ...
The nonlocal behavior of quantum mechanics can be used to generate guaranteed fresh randomness from ...
htmlabstractThe nonlocal behavior of quantum mechanics can be used to generate guaranteed fresh rand...
One of the striking properties of quantum mechanics is the occurrence of the Bell-type non-locality....
Device-independent randomness generation and quantum key distribution protocols rely on a fundamenta...
The outcomes obtained in Bell tests involving two-outcome measurements on two subsystems can, in pri...
Randomness is a fundamental feature of nature and a valuable resource for applications ranging from ...
Bell experiments can be used to generate private random numbers. An ideal Bell experiment would invo...
According to quantum theory, the outcomes obtained by measuring an entangled state necessarily exhib...
The device-independent (DI) framework is a novel approach to quantum information science which explo...
Two parties sharing entangled quantum systems can generate correlations that cannot be produced usin...
Measurements on entangled quantum systems necessarily yield outcomes that are intrinsically unpredic...
4+18 pages, 2 figuresInternational audienceTwo parties sharing entangled quantum systems can generat...
A recent sequence of works, initially motivated by the study of the nonlocal properties of entanglem...
Randomness is a central feature of quantum mechanics and an invaluable resource for both classical a...
The nonlocal behavior of quantum mechanics can be used to generate guaranteed fresh randomness from ...
The nonlocal behavior of quantum mechanics can be used to generate guaranteed fresh randomness from ...
htmlabstractThe nonlocal behavior of quantum mechanics can be used to generate guaranteed fresh rand...
One of the striking properties of quantum mechanics is the occurrence of the Bell-type non-locality....
Device-independent randomness generation and quantum key distribution protocols rely on a fundamenta...
The outcomes obtained in Bell tests involving two-outcome measurements on two subsystems can, in pri...
Randomness is a fundamental feature of nature and a valuable resource for applications ranging from ...
Bell experiments can be used to generate private random numbers. An ideal Bell experiment would invo...
According to quantum theory, the outcomes obtained by measuring an entangled state necessarily exhib...
The device-independent (DI) framework is a novel approach to quantum information science which explo...
Two parties sharing entangled quantum systems can generate correlations that cannot be produced usin...
Measurements on entangled quantum systems necessarily yield outcomes that are intrinsically unpredic...
4+18 pages, 2 figuresInternational audienceTwo parties sharing entangled quantum systems can generat...
A recent sequence of works, initially motivated by the study of the nonlocal properties of entanglem...
Randomness is a central feature of quantum mechanics and an invaluable resource for both classical a...