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Starobinsky inflation and dark energy and dark matter effects from quasicrystal like spacetime structures

机译:Quarobinsky通胀和暗能量和暗物质效果从外链结构等拟rγrys

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The goal of this work on mathematical cosmology and geometric methods in modified gravity theories, MGTs, is to investigate Starobinsky-like inflation scenarios determined by gravitational and scalar field configurations mimicking quasicrystal, QC, like structures. Such spacetime aperiodic QCs are different from those discovered and studied in solid state physics but described by similar geometric methods. We prove that a inhomogeneous and locally anisotropic gravitational and matter field effective QC mixed continuous and discrete "ether" can be modelled by exact cosmological solutions in MGTs and Einstein gravity. The coefficients of corresponding generic off-diagonal metrics and generalized connections depend (in general) on all spacetime coordinates via generating and integration functions and, certain smooth and discrete parameters. Imposing additional nonholonomic constraints, prescribing symmetries for generating functions and solving the boundary conditions for integration functions and constants, we can model various nontrivial torsion QC structures or extract cosmological Levi-Civita configurations with diagonal metrics reproducing de Sitter (inflationary) like and other type homogeneous inflation and acceleration phases. Finally, we speculate how various dark energy and dark matter effects can be modelled by off-diagonal interactions and deformations of a nontrivial QC like gravitational vacuum structure and analogous scalar matter fields. (C) 2018 Published by Elsevier Inc.
机译:这项工作的目标在数学宇宙学和改进的重力理论中的几何方法,是调查通过模拟拟rystal,QC,如结构的引力和标量场配置确定的StarObinsky的膨胀场景。这种时空对期QC不同于在固态物理学中发现和研究的那些,而是通过类似的几何方法描述。我们证明了不均匀和局部各向异性的重力和物质场有效QC混合连续和离散的“醚”可以通过MgTS和Einstein重力的精确宇宙学溶液进行建模。相应的通用偏差度量和广义连接的系数依赖于(通常)通过生成和集成功能以及某些平滑和离散的参数坐标。强加额外的非完整约束,规定用于生成功能的对称性并解决集成功能和常数的边界条件,我们可以使用对角线度量再现de Sitter(通胀)和其他类型均匀的对角线度量和其他类型和其他类型均匀的宇宙学Levi-civita配置进行模拟各种非变量扭转QC结构或提取宇宙学利维塔配置。通货膨胀和加速阶段。最后,我们推测了如何通过非测量QC的非对角线相互作用和变形来建模各种暗能和暗物质效应,如引力真空结构和类似标量场。 (c)2018年由elsevier公司发布

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