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首页> 外文期刊>International Journal of Foundations of Computer Science >THE PHYSICAL CHURCH-TURING THESIS AND THE PRINCIPLES OF QUANTUM THEORY
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THE PHYSICAL CHURCH-TURING THESIS AND THE PRINCIPLES OF QUANTUM THEORY

机译:物理教学论题和量子理论的原理

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As was emphasized by Deutsch, quantum computation shatters complexity theory, but is innocuous to computability theory. Yet Nielsen and others have shown how quantum theory as it stands could breach the physical Church-Turing thesis. We draw a clear line as to when this is the case, in a way that is inspired by Gandy. Gandy formulates postulates about physics, such as homogeneity of space and time, bounded density and velocity of information - and proves that the physical Church-Turing thesis is a con- sequence of these postulates. We provide a quantum version of the theorem. Thus this approach exhibits a formal non-trivial interplay between theoretical physics symmetries and computability assumptions.
机译:正如Deutsch所强调的那样,量子计算打破了复杂性理论,但对可计算性理论无害。但是尼尔森和其他人已经证明了量子理论的现状将如何突破物理的图灵图论。在这种情况下,我们以受甘迪启发的方式划清了界限。甘迪(Gandy)提出了关于物理学的假设,例如空间和时间的均质性,信息的有界密度和速度-并证明了物理“教堂-图灵”论点是这些假设的结果。我们提供了定理的量子形式。因此,这种方法在理论物理对称性和可计算性假设之间表现出形式上的平凡的相互作用。

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