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RELATIONAL QUADRILATERALLAND I. THE CLASSICAL THEORY

机译:关系夸张地I.经典理论

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Relational particle mechanics models bolster the relational side of the absolute versus relational motion debate. They are additionally toy models for the dynamical formulation of general relativity (GR) and its problem of time (PoT). They cover two aspects that the more commonly studied minisuperspace GR models do not: (1) by having a nontrivial notion of structure and thus of cosmological structure formation and of localized records. (2) They have linear as well as quadratic constraints, which is crucial as regards modeling many PoT facets. I previously solved relational triangleland classically, quantum mechanically and as regards a local resolution of the PoT. This rested on triangleland's shape space being S2 with isometry group SO(3), allowing for use of widely-known geometry, methods and atomic/molecular physics analogies. I now extend this work to the relational quadrilateral, which is far more typical of the general N-a-gon, represents a "diagonal to nondiagonal Bianchi IX minisuperspace" step-up in complexity, and encodes further PoT subtleties. The shape space now being CP2'with isometry group SU(3) /Z_3, I now need to draw on geometry, shape statistics and particle physics to solve this model; this is therefore an interdisciplinary paper. This Paper treats quadrilateralland at the classical level, and then paper II provides a quantum treatment.
机译:关系粒子力学模型支持绝对运动与关系运动辩论的关系。它们是动态模型的广义相对论(GR)及其时间问题(PoT)的玩具模型。它们涵盖了两个方面,而这两个方面是较普遍研究的微型超空间GR模型所不具备的:(1)通过具有非平凡的结构概念,从而具有宇宙结构的形成和局部记录的概念。 (2)它们具有线性和二次约束,这对建模许多PoT面至关重要。之前,我曾经典地,量子力学地以及关于PoT的局部分辨率解决了关系三角区。这取决于等轴测距组SO(3)的S3三角地的形状空间,从而允许使用众所周知的几何,方法和原子/分子物理学类比。现在,我将这项工作扩展到关系四边形,它是一般N-a-gon的典型代表,代表了“对角到非对角Bianchi IX微型超空间”的复杂性提升,并进一步编码了PoT的细微之处。现在,形状空间为CP2',等距组SU(3)/ Z_3,我现在需要利用几何,形状统计和粒子物理学来求解该模型;因此,这是一门跨学科的论文。本文在经典水平上对四边形进行处理,然后论文II提供了量子处理。

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