It has recently been shown that all causal correlations between two parties which output each one bit, a and b, when receiving each one bit, x and y, can be expressed as convex combinations of local correlations (i.e., correlations that can be simulated with local random variables) and non-local correlations of the form a+b=xy mod 2. We show that a single instance of the latter elementary non-local correlation suffices to simulate exactly all possible projective measurements that can be performed on the singlet state of two qubits, with no communication needed at all. This elementary non-local correlation thus defines some unit of non-locality, which we call a nl-bit
Despite the success of quantum mechanics in predicting the outcomes of experiments in many branches ...
Despite the success of quantum mechanics in predicting the outcomes of experiments in many branches ...
In an entanglement swapping process two initially uncorrelated qubits become entangled, without any ...
It is known that all causal correlations between two parties which output each 1 bit, a and b, when ...
It is known that all causal correlations between two parties which output each 1 bit, a and b, when ...
With the goal of gaining a deeper understanding of quantum non-locality, we decompose quantum correl...
AbstractA non-local box is a virtual device that has the following property: given that Alice inputs...
Bell's theorem states that, to simulate the correlations created by measurement on pure entangled qu...
Bell's theorem states that, to simulate the correlations created by measurement on pure entangled qu...
doi:10.1088/1367-2630/7/1/088 Abstract. Bell’s theorem states that, to simulate the correlations cre...
We present an experimental demonstration of quantum nonlocality without entanglement using single-ph...
So-called non-local boxes, which have been introduced as an idealization-in different respects-of th...
We show here that the recent work of Wolf and Wullschleger (quant-ph/0502030) on oblivious transfer ...
Quantum theory predicts and experiments confirm that nature can produce correlations between distant...
The simulation of quantum correlations with alternative nonlocal resources, such as classical commun...
Despite the success of quantum mechanics in predicting the outcomes of experiments in many branches ...
Despite the success of quantum mechanics in predicting the outcomes of experiments in many branches ...
In an entanglement swapping process two initially uncorrelated qubits become entangled, without any ...
It is known that all causal correlations between two parties which output each 1 bit, a and b, when ...
It is known that all causal correlations between two parties which output each 1 bit, a and b, when ...
With the goal of gaining a deeper understanding of quantum non-locality, we decompose quantum correl...
AbstractA non-local box is a virtual device that has the following property: given that Alice inputs...
Bell's theorem states that, to simulate the correlations created by measurement on pure entangled qu...
Bell's theorem states that, to simulate the correlations created by measurement on pure entangled qu...
doi:10.1088/1367-2630/7/1/088 Abstract. Bell’s theorem states that, to simulate the correlations cre...
We present an experimental demonstration of quantum nonlocality without entanglement using single-ph...
So-called non-local boxes, which have been introduced as an idealization-in different respects-of th...
We show here that the recent work of Wolf and Wullschleger (quant-ph/0502030) on oblivious transfer ...
Quantum theory predicts and experiments confirm that nature can produce correlations between distant...
The simulation of quantum correlations with alternative nonlocal resources, such as classical commun...
Despite the success of quantum mechanics in predicting the outcomes of experiments in many branches ...
Despite the success of quantum mechanics in predicting the outcomes of experiments in many branches ...
In an entanglement swapping process two initially uncorrelated qubits become entangled, without any ...