There is no anomaly in the nonlocality of two entangled qutrits
arXiv:1504.01601 · doi:10.1103/PhysRevA.92.030101
Abstract
There is no doubt about the fact that entanglement and nonlocality are distinct resources. It is acknowledged that a clear illustration of this point is the difference between maximally entangled states and states that maximally violate a Bell inequality. We give strong evidence that this anomaly may be an artefact of the measures that have been used to quantify nonlocality. By reasoning that the numeric value of a Bell function is akin to a witness rather than a quantifier, we define a measure of nonlocality and show that, for pairs of qutrits and of four-level systems, maximal entanglement does correspond to maximal nonlocality in the same scenario that gave rise to the discrepancy.
To appear as a rapid comm. in Phys. Rev. A under the title "Measure of nonlocality which is maximal for maximally entangled qutrits." 6 pages, 3 figures
References in corpus (7)
- Hidden Variables and the Two Theorems of John Bell
- Quantifying multipartite nonlocality
- Nonlocality and entanglement in a strange system
- Quantifying the nonlocality of GHZ quantum correlations by a bounded communication simulation protocol
- Multi-setting Bell inequality for qudits
- Maximal violation of tight Bell inequalities for maximal high-dimensional entanglement
- Gisin's theorem for two d-dimensional systems based on the Collins-Gisin-Linden-Masser-Popescu inequality
Cited by in corpus (30)
- Quantification of Einstein-Podolski-Rosen steering for two-qubit states
- Quantifying Bell non-locality with the trace distance
- Nonanomalous measure of realism-based nonlocality
- Multipartite nonlocality and random measurements
- Analysing quantum systems with randomised measurements
- Towards an equivalence between maximal entanglement and maximal quantum nonlocality
- Understanding the interplay of entanglement and nonlocality: motivating and developing a new branch of entanglement theory
- Survey on the Bell nonlocality of a pair of entangled qudits
- Enhancing entanglement, local and non-local information of accelerated two-qubit and two- qutrit systems via weak-reverse measurements
- Tripartite realism-based quantum nonlocality
- Weak quantum discord
- Measure-independent anomaly of nonlocality
- Strength and typicality of nonlocality in multisetting and multipartite Bell scenarios
- Realism-based nonlocality: Invariance under local unitary operations and asymptotic decay for thermal correlated states
- More Nonlocality with Less Entanglement in CHSH Experiments using Inefficient Detectors
- Experimental verification of time-order-dependent correlations in three-qubit Greenberger-Horne-Zeilinger-class states
- Experimentally friendly approach towards nonlocal correlations in multisetting N -partite Bell scenarios
- Maximal Non-Classicality in Multi-Setting Bell Inequalities
- Bell inequality violations with random mutually unbiased bases
- Quantifying Bell nonlocality of a pure two-qudit state via its entanglement
- Bell non-locality using tensor networks and sparse recovery
- Analytic quantification of the singlet nonlocality for the first Bell's inequality
- Analysis of Quantum Steering Measures
- Characterizing scalable measures of quantum resources
- Device-independent secret key rates via a post-selected Bell inequality
- The construction of sets with strong quantum nonlocality using fewer states
- Quantum correlation generation capability of experimental processes
- A note on quantum Bell nonlocality and quantum entanglement for high dimensional quantum systems
- Investigating nonclassicality of many qutrits by symmetric two-qubit operators
- New assessment on the nonlocality of correlation boxes