output
20022011
most citedExperimentally testable state-independent quantum contextuality

423 citations

Showing 2010 · quant-phShow all

7 papers · 2 filters

quant-ph201045 cited

Optimal preparation of graph states

Adan Cabello, Lars Eirik Danielsen, Antonio J. Lopez-Tarrida +1

We show how to prepare any graph state of up to 12 qubits with: (a) the minimum number of controlled-Z gates, and (b) the minimum preparation depth. We assume only one-qubit and co…

quant-ph201016 cited

Bell Experiments with Random Destination Sources

F. Sciarrino, G. Vallone, A. Cabello +1

It is generally assumed that sources sending randomly two particles to one or two different observers, named here random destination sources (RDS), cannot by used for genuine quant…

quant-ph201026 cited

Proposal of a two-qutrit contextuality test free of the finite precision and compatibility loopholes

Adan Cabello, Marcelo Terra Cunha

It has been argued that any test of quantum contextuality is nullified by the fact that perfect orthogonality and perfect compatibility cannot be achieved in finite precision exper…

quant-ph20101 cited

Effect of a high-frequency magnetic field on the resonant behavior displayed by a spin- particle under the influence of a rotating magnetic field

Jesús Casado-Pascual

In this paper, we investigate the role of a high-frequency magnetic field in the resonant behavior displayed by a spin- particle under the influence of a rotating magnetic fie…

quant-ph201035 cited

State-independent quantum contextuality for continuous variables

Angel R. Plastino, Adan Cabello

Recent experiments have shown that nature violates noncontextual inequalities regardless of the state of the physical system. So far, all these inequalities involve measurements of…

quant-ph20105 cited

All-versus-nothing proofs with n qubits distributed between m parties

Adan Cabello, Pilar Moreno

All-versus-nothing (AVN) proofs show the conflict between Einstein, Podolsky, and Rosen's elements of reality and the perfect correlations of some quantum states. Given an n-qubit…