量子欧拉角和机构依赖时空

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
G Amelino-Camelia, V D’Esposito, G Fabiano, D Frattulillo, P A Höhn, F Mercati
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引用次数: 0

摘要

量子引力有望在参照系的描述中引入量子方面的内容。在此,我们开始探索量子引力诱导的经典对称性变形如何在有效机制中改变参照系之间的变换规律。我们引用量子群 SUq(2) 作为变形空间旋转的描述,并将其代数表示的状态解释为描述两个参照系之间的相对方向。这导致了欧拉角之一的量化,以及代理依赖性的一个方面:空间被重构为模糊点的集合,为每个代理所独有,取决于他们对参照系的选择。每个代理只能选择一个方向,在这个方向上的点可以是尖锐的,而所有其他方向上的点都会变得模糊,其模糊程度取决于这个选择。因此,做出不同选择的两个代理将观察到模糊程度不同的相同点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantum euler angles and agency-dependent spacetime
Quantum gravity is expected to introduce quantum aspects into the description of reference frames. Here we begin exploring how quantum gravity induced deformations of classical symmetries could modify the transformation laws among reference frames in an effective regime. We invoke the quantum group SUq(2) as a description of deformed spatial rotations and interpret states of a representation of its algebra as describing the relative orientation between two reference frames. This leads to a quantization of one of the Euler angles and to an aspect of agency dependence: space is reconstructed as a collection of fuzzy points, exclusive to each agent, which depends on their choice of reference frame. Each agent can choose only one direction in which points can be sharp, while points in all other directions become fuzzy in a way that depends on this choice. Two agents making different choices will thus observe the same points with different degrees of fuzziness.
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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