Experimental genuine quantum nonlocality in the triangle network
arXiv:2401.15428 · doi:10.1103/5hhc-rw3t
Abstract
In the last decade, it was understood that quantum networks involving several independent sources of entanglement which are distributed and measured by several parties allowed for completely novel forms of nonclassical quantum correlations, when entangled measurements are performed. Here, we experimentally obtain quantum correlations in a triangle network structure, and provide solid evidence of its nonlocality. Specifically, we first obtain the elegant distribution proposed in (Entropy 21, 325) by performing a six-photon experiment. Then, we justify its nonlocality based on machine learning tools to estimate the distance of the experimentally obtained correlation to the local set, and through the violation of a family of conjectured inequalities tailored for the triangle network.
References in corpus (44)
- Experimental loophole-free violation of a Bell inequality using entangled electron spins separated by 1.3 km
- Significant-loophole-free test of Bell's theorem with entangled photons
- Random Numbers Certified by Bell's Theorem
- A strong loophole-free test of local realism
- No Signalling and Quantum Key Distribution
- Characterizing the nonlocal correlations of particles that never interacted
- Bilocal versus non-bilocal correlations in entanglement swapping experiments
- Quantum theory based on real numbers can be experimentally falsified
- Genuine quantum nonlocality in the triangle network
- Nonlocal correlations in the star-network configuration
- Polynomial Bell inequalities
- Nonlinear Bell inequalities tailored for quantum networks
- The Inflation Technique for Causal Inference with Latent Variables
- Entanglement 25 years after Quantum Teleportation: testing joint measurements in quantum networks
- Experimental demonstration of non-bilocal quantum correlations
- Experimental non-locality in a quantum network
- Bilocal Bell inequalities violated by the quantum Elegant Joint Measurement
- Self-testing entangled measurements in quantum networks
- A neural network oracle for quantum nonlocality problems in networks
- Entanglement swapping and quantum correlations via Elegant Joint Measurements
- Experimental demonstration of nonbilocality with truly independent sources and strict locality constraints
- Quantum networks self-test all entangled states
- Causal inference via algebraic geometry: feasibility tests for functional causal structures with two binary observed variables
- Single-photon nonlocality in quantum networks
- The Inflation Technique Completely Solves the Causal Compatibility Problem
- Demonstrating the power of quantum computers, certification of highly entangled measurements and scalable quantum nonlocality
- Nonlocality for Generic Networks
- Proofs of network quantum nonlocality in continuous families of distributions
- Self-testing of physical theories, or, is quantum theory optimal with respect to some information-processing task?
- Certification of non-classicality in all links of a photonic star network without assuming quantum mechanics
- Experimental full network nonlocality with independent sources and strict locality constraints
- Partial self-testing and randomness certification in the triangle network
- Towards a minimal example of quantum nonlocality without inputs
- Experimental nonclassicality in a causal network without assuming freedom of choice
- Network Nonlocality via Rigidity of Token-Counting and Color-Matching
- Experimental Demonstration that No Tripartite-Nonlocal Causal Theory Explains Nature's Correlations
- Inflation: a Python library for classical and quantum causal compatibility
- Bipartite quantum measurements with optimal single-sided distinguishability
- Numerically assisted determination of local models in network scenarios
- Network quantum steering enables randomness certification without seed randomness
- Topologically Robust Quantum Network Nonlocality
- Closing the detection loophole in the triangle network with high-dimensional photonic states
- Local models and Bell inequalities for the minimal triangle network
- Exploring the Local Landscape in the Triangle Network