Multipartite Nonlocality as a Resource and Quantum Correlations Having Indefinite Causal Order
arXiv:1310.7598 · doi:10.1088/1751-8113/47/42/424014
Abstract
The characterization of quantum correlations in terms of information-theoretic resource has been a fruitful approach to understand the power of quantum correlations as a resource. While bipartite entanglement and Bell inequality violation in this setting have been extensively studied, relatively little is known about their multipartite counterpart. In this paper, we apply and adapt the recently proposed definitions of multipartite nonlocality [Phys. Rev. A 88, 014102] to the three- and four-partite scenario to gain new insight on the resource aspect of multipartite nonlocal quantum correlations. Specifically, we show that reproducing certain tripartite quantum correlations requires mixtures of classical resources --- be it the ability to change the groupings or the time orderings of measurements. Thus, when seen from the perspective of biseparable one-way classical signaling resources, certain tripartite quantum correlations do not admit a definite causal order. In the four- partite scenario, we obtain a superset description of the set of biseparable correlations which can be produced by allowing two groups of bipartite non-signaling resources. Quantum violation of the resulting Bell-like inequalities are investigated. As a byproduct, we obtain some new examples of device-independent witnesses for genuine four-partite entanglement, and also device-independent witnesses that allows one to infer the structure of the underlying multipartite entanglement.
9 pages, 2 tables
References in corpus (31)
- Bell nonlocality
- Entanglement detection
- Device-independent security of quantum cryptography against collective attacks
- 14-qubit entanglement: creation and coherence
- A convergent hierarchy of semidefinite programs characterizing the set of quantum correlations
- Bounding the set of quantum correlations
- Detection-Loophole-Free Test of Quantum Nonlocality, and Applications
- Secure device-independent quantum key distribution with causally independent measurement devices
- Private Randomness Expansion With Untrusted Devices
- Testing the Hilbert space dimension
- Device-independent tests of classical and quantum dimensions
- Robust Self Testing of the Singlet
- Computational power of correlations
- A lower bound on the dimension of a quantum system given measured data
- More Randomness from the Same Data
- Unbounded violation of tripartite Bell inequalities
- Experimental Three-Particle Quantum Nonlocality under Strict Locality Conditions
- Using complete measurement statistics for optimal device-independent randomness evaluation
- Device-independent certification of entangled measurements
- Extremal correlations of the tripartite no-signaling polytope
- Quantifying multipartite nonlocality
- Semi-device-independent bounds on entanglement
- Device-independent demonstration of genuine multipartite entanglement
- Unconditionally secure device-independent quantum key distribution with only two devices
- Bounds on Quantum Correlations in Bell Inequality Experiments
- Tripartite quantum state violating the hidden influence constraints
- Device-Independent Randomness Generation in the Presence of Weak Cross-Talk
- Characterization of quantum correlations with local dimension constraints and its device-independent applications
- Generalized Clauser-Horne-Shimony-Holt inequalities maximally violated by higher dimensional systems
- Bell inequalities for three systems and arbitrarily many measurement outcomes
- Device-independent certification of the teleportation of a qubit
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- Family of Bell-like inequalities as device-independent witnesses for entanglement depth
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- Device-independent detection of genuine multipartite entanglement for all pure states
- Quantifying multipartite nonlocality via the size of the resource
- Towards an equivalence between maximal entanglement and maximal quantum nonlocality
- Quantum clocks and their synchronisation - the Alternate Ticks Game
- Bell inequalities for nonlocality depth
- Structure of quantum and broadcasting nonlocal correlations
- Wigner's approach enabled detection of multipartite nonlocality using all different bipartitions
- Detection of the genuine non-locality of any three-qubit state
- Multipartite entanglement vs nonlocality for two families of -qubit states