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Hypothesis testing and Stein's lemma in general probability theories with Euclidean Jordan algebra and its quantum realization

Hypothesis testing and Stein's lemma in general probability theories with Euclidean Jordan algebra and its quantum realization

来源:Arxiv_logoArxiv
英文摘要

Even though quantum information theory gives advantage over classical information theory, these two information theories have a structural similarity that many exponet rates of information tasks asymptotically equal to entropic quantities. A typical example is Stein's Lemma, which many researchers still keep interested in. In this paper, in order to analyze the mathemtaical roots of the structural similarity, we investigate mathematically minimum structure where Stein's Lemma holds. We focus on the structure of Euclidean Jordan Algebras (EJAs), which is a generalization of the algebraic structure in quantum theory, and we investigate the properties of general models of General Probabilistic Theories (GPTs) generated by EJAs. As a result, we prove Stein's Lemma in any model of GPTs generated by EJAs by establishing a generalization of information theoretical tools from the mathematical properties of EJAs.

Masahito Hayashi、Hayato Arai、Kanta Sonoda

数学物理学

Masahito Hayashi,Hayato Arai,Kanta Sonoda.Hypothesis testing and Stein's lemma in general probability theories with Euclidean Jordan algebra and its quantum realization[EB/OL].(2025-05-05)[2025-05-22].https://arxiv.org/abs/2505.02487.点此复制

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