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Self-Testing of Physical Theories, or, Is Quantum Theory Optimal with Respect to Some Information-Processing Task?

机译:物理理论的自我测试,或者是对某些信息处理任务的量子理论最佳?

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摘要

Self-testing usually refers to the task of taking a given set of observed correlations that am assumed to arise via a process that is accurately described by quantum theory, and trying to infer the quantum state and measurements. In other words it is concerned with the question of whether we can tell what quantum black-box devices are doing by looking only at their input-output behavior and is known to be possible in several cases. Here we introduce a more general question: is it possible to self-test a theory, and, in particular, quantum theory? More precisely, we ask whether within a particular causal structure there are tasks that can only be performed in theories that have the same correlations as quantum mechanics in any scenario. We present a candidate task for such a correlation self-test and analyze it in a range of generalized probabilistic theories (GPTs), showing that none of these perform better than quantum theory. A generalization of our results showing that all nonquantum GPTs are strictly inferior to quantum mechanics for this task would point to a new way to axiomatize quantum theory, and enable an experimental test that simultaneously rules out such GPTs.
机译:自我测试通常是指通过量子理论准确描述的过程,并试图推断量子状态和测量来拍摄假定的特定观察相关性的任务。换句话说,它涉及我们通过仅通过查看它们的输入输出行为来讲述Quantum黑盒设备正在做什么的问题,并且已知在几个情况下是可能的。在这里,我们介绍了一个更一般的问题:是否有可能自我测试理论,特别是量子理论?更确切地说,我们询问是否在特定的因果结构内有任务,这些任务只能在任何场景中与量子力学的理论中进行的理论中进行。我们为这种相关自检的候选任务提供了一种候选任务,并在一系列广义概率理论(GPT)中分析它,表明这些都没有比量子理论更好。我们的结果的概括表明,所有非主题GPT都严格逊于这项任务的量子力学将指向一个新的方式来减少量子理论,使得能够同时排除这种GPT的实验测试。

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  • 来源
    《Physical review letters》 |2020年第6期|060406.1-060406.5|共5页
  • 作者单位

    Austrian Acad Sci Inst Quantum Opt & Quantum Informat IQOQI Vienna Boltzmanngasse 3 A-1090 Vienna Austria;

    Univ York Dept Math York YO10 SDD N Yorkshire England;

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