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首页> 外文期刊>International Journal of Theoretical Physics: A Journal of Original Research and Reviews in Theoretical Physics and Related Mathematics, Dedicated to the Unification of Physics >The First Physics Picture of Contractions from a Fundamental Quantum Relativity Symmetry Including all Known Relativity Symmetries, Classical and Quantum
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The First Physics Picture of Contractions from a Fundamental Quantum Relativity Symmetry Including all Known Relativity Symmetries, Classical and Quantum

机译:来自基本量子相对对称的收缩的第一物理图像,包括所有已知的相对性对称,古典和量子

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In this article, we utilize the insights gleaned from our recent formulation of space(-time), as well as dynamical picture of quantum mechanics and its classical approximation, from the relativity symmetry perspective in order to push further into the realm of the proposed fundamental relativity symmetry SO(2,4). The latter has its origin arising from the perspectives of Planck scale deformations of relativity symmetries. We explicitly trace how the diverse actors in this story change through various contraction limits, paying careful attention to the relevant physical units, in order to place all known relativity theories - quantum and classical - within a single framework. More specifically, we explore both of the possible contractions of SO(2,4) and its coset spaces in order to determine how best to recover the lower-level theories. These include both new models and all familiar theories, as well as quantum and classical dynamics with and without Einsteinian special relativity. Along the way, we also find connections with covariant quantum mechanics. The emphasis of this article rests on the ability of this language to not only encompass all known physical theories, but to also provide a path for extensions. It will serve as the basic background for more detailed formulations of the dynamical theories at each level, as well as the exact connections amongst them.
机译:在本文中,我们利用了我们最近的空间( - - 时间)的洞察力,以及量子力学的动态图片及其经典逼近,从相对对称的角度来看,以便进一步进入所提出的基础的领域相对性对称如此(2,4)。后者从普通对称性的普朗克规模变形的角度产生了它的起源。我们明确地追踪了这个故事中的各种演员如何通过各种收缩限制来改变,仔细关注相关的物理单元,以便将所有已知的相对论理论 - 量子和经典置于一个框架内。更具体地,我们探索所以(2,4)及其陪核空间的可能收缩,以便确定如何最好地恢复较低级别的理论。这些包括新的模型和所有熟悉的理论,以及Quantum和Vicrical Dynamics,没有Einsteinian特殊相对性。一路上,我们还发现与协变量量子力学的连接。本文的重点依赖于这种语言不仅包含所有已知的物理理论的能力,而且还提供了扩展的路径。它将作为每个级别的动态理论的更详细配方的基本背景,以及它们之间的确切连接。

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