One of the striking properties of quantum mechanics is the occurrence of the Bell-type non-locality. They are a fundamental feature of the theory that allows two parties that share an entangled quantum system to observe correlations stronger than possible in classical physics. In addition to their theoretical significance, non-local correlations have practical applications, such as device-independent randomness generation, providing private unpredictable numbers even when they are obtained using devices delivered by an untrusted vendor. Thus, determining the quantity of certifiable randomness that can be produced using a specific set of non-local correlations is of significant interest. In this paper, we present an experimental realization ...
14+18 pages, several figuresNonlocal tests on multipartite quantum correlations form the basis of pr...
Unpredictability, or randomness, of the outcomes of measurements made on an entangled state can be c...
Randomness is a central feature of quantum mechanics and an invaluable resource for both classical a...
According to quantum theory, the outcomes obtained by measuring an entangled state necessarily exhib...
Randomness is a fundamental feature of nature and a valuable resource for applications ranging from ...
The outcomes obtained in Bell tests involving two-outcome measurements on two subsystems can, in pri...
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...
Device-independent randomness generation and quantum key distribution protocols rely on a fundamenta...
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...
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 ...
The device-independent (DI) framework is a novel approach to quantum information science which explo...
Bell experiments can be used to generate private random numbers. An ideal Bell experiment would invo...
14+18 pages, several figuresNonlocal tests on multipartite quantum correlations form the basis of pr...
Unpredictability, or randomness, of the outcomes of measurements made on an entangled state can be c...
Randomness is a central feature of quantum mechanics and an invaluable resource for both classical a...
According to quantum theory, the outcomes obtained by measuring an entangled state necessarily exhib...
Randomness is a fundamental feature of nature and a valuable resource for applications ranging from ...
The outcomes obtained in Bell tests involving two-outcome measurements on two subsystems can, in pri...
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...
Device-independent randomness generation and quantum key distribution protocols rely on a fundamenta...
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...
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 ...
The device-independent (DI) framework is a novel approach to quantum information science which explo...
Bell experiments can be used to generate private random numbers. An ideal Bell experiment would invo...
14+18 pages, several figuresNonlocal tests on multipartite quantum correlations form the basis of pr...
Unpredictability, or randomness, of the outcomes of measurements made on an entangled state can be c...
Randomness is a central feature of quantum mechanics and an invaluable resource for both classical a...