Experimental test of Tsirelson's bound with a single photonic qubit
Abstract
For many protocols, quantum strategies have advantages compared with their classical counter-partners, and these advantages have attracted many interests and applications. One of the famous examples is the Clauser-Horne-Shimony-Holt (CHSH) game, which recasts Bell's theorem~\cite{2} into the framework of a game. In the CHSH game, two space-like separated players, Alice and Bob are each assigned a classical bit and respectively. Then they return bits and according to some pre-agreed strategies. They will win the game when . In the game, if the players use the classical strategies, the optimal success probability .However, if they add some quantum resources, the success probability will increase and up to maximal value , which is know as the Tsirelson's bound. Moreover, Popescu and Rohrlich noted that the perfect success probability can also be achieved in a more general theory without violating the no-signaling assumption
Cite
@article{arxiv.2201.10188,
title = {Experimental test of Tsirelson's bound with a single photonic qubit},
author = {Zhiyu Tian and Yuan-Yuan Zhao and Hao Wu and Zhao Wang and Le Luo},
journal= {arXiv preprint arXiv:2201.10188},
year = {2022}
}