Results 131 to 140 of about 264 (153)

On Bell's theorem for N‐qubits

Fortschritte der Physik, 2003
AbstractWe present a single general Bell inequality that summarizes all possible Bell type constrains on the correlation function for the N‐particle system (i.e., it is a necessary and sufficient condition for the existence of local realistic models for the correlation function).
Zukowski, Marek, Brukner, Caslav
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Strict Hierarchy of Bell Theorems

Second International Conference on Quantum, Nano and Micro Technologies (ICQNM 2008), 2008
As proved by John Bell, quantum mechanics exhibits correlations in spacelike separated bipartite systems that are impossible to reproduce by classical means. There are three levels of "Bell theorems", depending on which aspects of the quantum correlations can or cannot be reproduced classically.
Gilles Brassard, André Allan Méthot
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Bell's theorem and Bayes' theorem

Foundations of Physics, 1990
Bell's theorem is expounded as an analysis in Bayesian probabilistic inference. Assume that the result of a spin measurement on a spin-1/2 particle is governed by a variable internal to the particle (local, “hidden”), and examine pairs of particles having zero combined angular momentum so that their internal variables are correlated: knowing something ...
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Bell’s theorem without inequalities

American Journal of Physics, 1990
It is demonstrated that the premisses of the Einstein–Podolsky–Rosen paper are inconsistent when applied to quantum systems consisting of at least three particles. The demonstration reveals that the EPR program contradicts quantum mechanics even for the cases of perfect correlations.
Greenberger, Daniel   +3 more
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Bell's theorem in an indeterministic universe

Synthese, 1995
A variation of Bell's theorem that deals with the indeterministic case is formulated and proved within the logical framework of Lewis's theory of counterfactuals. The no-faster-than-light-influence condition is expressed in terms of Lewis ‘would’ counterfactual conditionals.
Donald Bedford, Henry P. Stapp
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Bell’s theorem

2018
Bell’s theorem is concerned with the outcomes of a special type of ‘correlation experiment’ in quantum mechanics. It shows that under certain conditions these outcomes would be restricted by a system of inequalities (the ‘Bell inequalities’) that contradict the predictions of quantum mechanics. Various experimental tests confirm the quantum predictions
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Impossible colorings and Bell's theorem

Physics Letters A, 1999
zbMATH Open Web Interface contents unavailable due to conflicting licenses.
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Bell’s Theorem

2017
This chapter discusses the result which has come to be known as ‘Bell’s Theorem’ but which Bell himself instead referred to as the ‘locality inequality theorem’.
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