Device-independent and semi-device-independent entanglement certification in broadcast Bell scenarios
arXiv:2111.06358 · doi:10.21468/SciPostPhysCore.6.2.028
Abstract
It has recently been shown that by broadcasting the subsystems of a bipartite quantum state, one can activate Bell nonlocality and significantly improve noise tolerance bounds for device-independent entanglement certification. In this work we strengthen these results and explore new aspects of this phenomenon. First, we prove new results related to the activation of Bell nonlocality. We construct Bell inequalities tailored to the broadcast scenario, and show how broadcasting can lead to even stronger notions of Bell nonlocality activation. In particular, we exploit these ideas to show that bipartite states admitting a local hidden-variable model for general measurements can lead to genuine tripartite nonlocal correlations. We then study device-independent entanglement certification in the broadcast scenario, and show through semidefinite programming techniques that device-independent entanglement certification is possible for the two-qubit Werner state in essentially the entire range of entanglement. Finally, we extend the concept of EPR steering to the broadcast scenario, and present novel examples of activation of the two-qubit isotropic state. Our results pave the way for broadcast-based device-dependent and semi-device-independent protocols.
Published version (up to formatting differences), 29 pages, 4 figures
References in corpus (15)
- Device-independent security of quantum cryptography against collective attacks
- Steering, Entanglement, Nonlocality, and the EPR Paradox
- A convergent hierarchy of semidefinite programs characterizing the set of quantum correlations
- Device-independent quantum key distribution secure against collective attacks
- Experimental device-independent quantum key distribution between distant users
- Certified randomness in quantum physics
- Grothendieck's constant and local models for noisy entangled quantum states
- Detection loophole in asymmetric Bell experiments
- Einstein-Podolsky-Rosen steering and the steering ellipsoid
- Extremal correlations of the tripartite no-signaling polytope
- Local hidden--variable models for entangled quantum states
- Partial list of bipartite Bell inequalities with four binary settings
- Super-Activation of Quantum Steering
- Exponential separation between shallow quantum circuits and unbounded fan-in shallow classical circuits
- Qutrit witness from the Grothendieck constant of order four