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Biorthogonal quantum mechanics: Super-quantum correlations and expectation values without definite probabilities

机译:双正交量子力学:没有确定概率的超量子相关性和期望值

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摘要

We propose mutant versions of quantum mechanics constructed on vector spaces over the finite Galois fields GF(3) and GF(9). The mutation we consider here is distinct from what we proposed in previous papers on Galois field quantum mechanics. In this new mutation, the canonical expression for expectation values is retained instead of that for probabilities. In fact, probabilities are indeterminate. Furthermore, it is shown that the mutant quantum mechanics over the finite field GF(9) exhibits super-quantum correlations (i.e. the Bell-Clauser-Horne-Shimony-Holt bound is 4). We comment on the fundamental physical importance of these results in the context of quantum gravity.
机译:我们提出构造在有限伽罗瓦场GF(3)和GF(9)上的向量空间上的量子力学的突变形式。我们在这里考虑的突变不同于我们先前在Galois场量子力学上的论文中提出的突变。在此新突变中,保留了期望值的规范表达式,而不是概率的规范表达式。实际上,概率是不确定的。此外,它表明有限域GF(9)上的突变量子力学表现出超量子相关性(即Bell-Clauser-Horne-Shimony-Holt界为4)。我们在量子引力的背景下评论这些结果的基本物理重要性。

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