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Evidence for the epistemic view of quantum states: A toy theory

机译:量子态的认识论证据:玩具理论

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We present a toy theory that is based on a simple principle: the number of questions about the physical state of a system that are answered must always be equal to the number that are unanswered in a state of maximal knowledge. Many quantum phenomena are found to have analogues within this toy theory. These include the noncommutativity of measurements, interference, the multiplicity of convex decompositions of a mixed state, the impossibility of discriminating nonorthogonal states, the impossibility of a universal state inverter, the distinction between bipartite and tripartite entanglement, the monogamy of pure entanglement, no cloning, no broadcasting, remote steering, teleportation, entanglement swapping, dense coding, mutually unbiased bases, and many others. The diversity and quality of these analogies is taken as evidence for the view that quantum states are states of incomplete knowledge rather than states of reality. A consideration of the phenomena that the toy theory fails to reproduce, notably, violations of Bell inequalities and the existence of a Kochen-Specker theorem, provides clues for how to proceed with this research program.
机译:我们提出了一个基于简单原理的玩具理论:关于系统物理状态的已回答问题的数量必须始终等于在最大知识状态下未得到回答的数量。在这个玩具理论中发现许多量子现象具有类似物。其中包括测量的非对易性,干涉,混合态的凸分解的多重性,非正交态的辨别的不可能,通用状态逆变器的不可能,二分和三方纠缠的区别,纯纠缠的一夫一妻制,无克隆,无广播,远程控制,远距传送,纠缠交换,密集编码,相互无偏的碱基等等。这些类比的多样性和质量被证明为以下观点:量子态是不完全知识的状态,而不是现实的状态。考虑到玩具理论无法重现的现象,特别是违反了贝尔不等式和存在Kochen-Specker定理,这为如何进行此研究程序提供了线索。

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