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首页> 外文期刊>Foundations of Physics: An International Journal Devoted to the Conceptual Bases and Fundamental Theories of Modern Physics, Biophysics & Cosmology >Free Quantum Field Theory from Quantum Cellular Automata Derivation of Weyl, Dirac and Maxwell Quantum Cellular Automata
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Free Quantum Field Theory from Quantum Cellular Automata Derivation of Weyl, Dirac and Maxwell Quantum Cellular Automata

机译:从Weyl,Dirac和Maxwell量子细胞自动机的量子细胞自动机推导得到的自由量子场理论

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摘要

After leading to a new axiomatic derivation of quantum theory (see D'Ariano et al. in Found Phys, 2015), the new informational paradigm is entering the domain of quantum field theory, suggesting a quantum automata framework that can be regarded as an extension of quantum field theory to including an hypothetical Planck scale, and with the usual quantum field theory recovered in the relativistic limit of small wave-vectors. Being derived from simple principles (linearity, unitarity, locality, homogeneity, isotropy, and minimality of dimension), the automata theory is quantum ab-initio, and does not assume Lorentz covariance and mechanical notions. Being discrete it can describe localized states and measurements (unmanageable by quantum field theory), solving all the issues plaguing field theory originated from the continuum. These features make the theory an ideal framework for quantum gravity, with relativistic covariance and space-time emergent solely from the interactions, and not assumed a priori. The paper presents a synthetic derivation of the automata theory, showing how the principles lead to a description in terms of a quantum automaton over a Cayley graph of a group. Restricting to Abelian groups we show how the automata recover the Weyl, Dirac and Maxwell dynamics in the relativistic limit. We conclude with some new routes about the more general scenario of non-Abelian Cayley graphs. The phenomenology arising from the automata theory in the ultra-relativistic domain and the analysis of corresponding distorted Lorentz covariance is reviewed in Bisio et al. (Found Phys 2015, in this same issue).
机译:在引出了新的量子理论的公理式推论之后(参见D'Ariano等人在Found Phys,2015),新的信息范式进入了量子场论的领域,这表明可以视为扩展的量子自动机框架量子场论包括假设的普朗克尺度,并且在小波矢量的相对论极限中恢复了通常的量子场论。自动机理论是从简单原理(线性,统一性,局部性,均质性,各向同性和最小尺寸)派生而来的,它是量子从头算,并且不假设洛伦兹协方差和机械概念。它是离散的,可以描述局部状态和测量结果(量子场论无法控制),解决了困扰连续论起源的场论的所有问题。这些特征使该理论成为量子引力的理想框架,相对论协方差和时空仅从相互作用中出现,而不是先验的。本文介绍了自动机理论的综合推导,显示了原理是如何导致基于群Cayley图上的量子自动机的描述的。限于阿贝尔群,我们展示了自动机如何在相对论极限下恢复Weyl,Dirac和Maxwell动力学。我们以一些关于非阿贝尔Cayley图更一般情况的新路线作为结尾。 Bisio等人综述了超相对论域中自动机理论引起的现象学以及相应的扭曲的洛伦兹协方差的分析。 (在同一期杂志中找到了Phys 2015)。

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