Three-Body Non-Locality in Particle Decays
Three-Body Non-Locality in Particle Decays
The exploration of entanglement and Bell non-locality among multi-particle quantum systems offers a profound avenue for testing and understanding the limits of quantum mechanics and local real hidden variable theories. In this work, we examine non-local correlations among three massless spin-1/2 particles generated from the three-body decay of a massive particle, utilizing a framework based on general four-fermion interactions. By analyzing several inequalities, we address the detection of deviations from quantum mechanics as well as violations of two key hidden variable theories: fully local-real and bipartite local-real theories. Our approach encompasses the standard Mermin inequality and the tight $4 \times 4 \times 2$ inequality, providing a comprehensive framework for probing three-partite non-local correlations. Our findings provide deeper insights into the boundaries of classical and quantum theories in three-particle systems, advancing the understanding of non-locality in particle decays and its relevance to particle physics and quantum foundations.
Paweł Horodecki、Kazuki Sakurai、Abhyoudai S. Shaleena、Michael Spannowsky
物理学非线性科学自然科学研究方法
Paweł Horodecki,Kazuki Sakurai,Abhyoudai S. Shaleena,Michael Spannowsky.Three-Body Non-Locality in Particle Decays[EB/OL].(2025-06-27)[2025-07-16].https://arxiv.org/abs/2502.19470.点此复制
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