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Testing Linearity against Non-Signaling Strategies

机译:针对非信号策略测试线性

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Non-signaling strategies are collections of distributions with certain non-local correlations. They have been studied in Physics as a strict generalization of quantum strategies to understand the power and limitations of Nature's apparent non-locality. Recently, they have received attention in Theoretical Computer Science due to connections to Complexity and Cryptography.We initiate the study of Property Testing against non-signaling strategies, focusing first on the classical problem of *linearity testing* (Blum, Luby, and Rubinfeld; JCSS 1993). We prove that any non-signaling strategy that passes the linearity test with high probability must be close to a *quasi-distribution* over linear functions.Quasi-distributions generalize the notion of probability distributions over global objects (such as functions) by allowing negative probabilities, while at the same time requiring that "local views" follow standard distributions (with non-negative probabilities). Quasi-distributions arise naturally in the study of Quantum Mechanics as a tool to describe various non-local phenomena.Our analysis of the linearity test relies on Fourier analytic techniques applied to quasi-distributions. Along the way, we also establish general equivalences between non-signaling strategies and quasi-distributions, which we believe will provide a useful perspective on the study of Property Testing against non-signaling strategies beyond linearity testing.
机译:非信令策略是具有某些非本地相关性的分布的集合。在物理学中对它们进行了研究,作为对量子策略的严格概括,以了解自然界表面非局部性的力量和局限性。最近,由于它们与复杂性和密码学的联系,它们在理论计算机科学中引起了人们的注意。 JCSS 1993)。我们证明,任何以高概率通过线性检验的非信号策略都必须在线性函数上接近于*准分布*。概率,同时要求“局部视图”遵循标准分布(具有非负概率)。在描述量子力学作为一种描述各种非局部现象的工具时,准分布自然而然地出现了。我们对线性测试的分析依赖于应用于准分布的傅立叶分析技术。在此过程中,我们还建立了非信令策略和准分布之间的一般等价关系,我们认为这将为研究非线性策略之外的非信令策略的性能测试提供有用的视角。

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