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May 25, 20260 citationsOpen Access

Information Causality and Optimality Uniquely Determine Quantum Correlations

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DSDaniel Süß

Key Points

  • This research aims to demonstrate that quantum correlations uniquely satisfy Information Causality and optimality in correlation theories.
  • Utilized the Eigenvector Protocol to establish the relationship between Information Causality and correlation kernels.
  • Applied the Tsirelson uniqueness result to characterize quantum correlations as maximizers of the CHSH value.
  • Quantum correlations uniquely maximize the CHSH value among all rotationally covariant bipartite correlation kernels (CHSH value > 2).
  • Information Causality constrains feasible correlation kernels, allowing only those that respect this principle.

Abstract

We show that quantum mechanics is the unique correlation theory that is both IC-admissible and maximally non-local. Among all rotationally covariant bipartite correlationkernels satisfying Information Causality (IC), the quantum correlation isthe unique maximizer of the CHSH value. This result requires two principles: (1)Information Causality, which constrains the feasible set of kernels to those with , and(2) an optimality criterion, which selects the extremal point. While these principles worktogether as a unified framework, optimality is formally a second assumption beyond IC.The proof combines the Eigenvector Protocol (which establishes that IC implies )with the Tsirelson uniqueness result. This provides a two-principle characterization ofquantum correlations grounded in physical constraints and extremality.

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Cite This Study

Daniel Süß (2026) studied this question.

synapsesocial.com/papers/6a13e8d20e02ee3982d33608https://doi.org/10.5281/zenodo.20351682
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