A competitive game whose maximal Nash-equilibrium payoff requires quantum resources for its achievement
Abstract
While it is known that shared quantum entanglement can offer improved solutions to a number of purely cooperative tasks for groups of remote agents, controversy remains regarding the legitimacy of quantum games in a competitive setting--in particular, whether they offer any advantage beyond what is achievable using classical resources. We construct a competitive game between four players based on the minority game where the maximal Nash-equilibrium payoff when played with the appropriate quantum resource is greater than that obtainable by classical means, assuming a local hidden variable model. The game is constructed in a manner analogous to a Bell inequality. This result is important in confirming the legitimacy of quantum games.
Keywords
Cite
@article{arxiv.0908.4373,
title = {A competitive game whose maximal Nash-equilibrium payoff requires quantum resources for its achievement},
author = {Charles D. Hill and Adrian P. Flitney and Nicolas C. Menicucci},
journal= {arXiv preprint arXiv:0908.4373},
year = {2015}
}
Comments
8 pages, revtex4