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平移引力:从理论到宇宙学

Teleparallel gravity: from theory to cosmology.

作者信息

Bahamonde Sebastian, Dialektopoulos Konstantinos F, Escamilla-Rivera Celia, Farrugia Gabriel, Gakis Viktor, Hendry Martin, Hohmann Manuel, Levi Said Jackson, Mifsud Jurgen, Di Valentino Eleonora

机构信息

Laboratory of Theoretical Physics, Institute of Physics, University of Tartu, W. Ostwaldi 1, 50411 Tartu, Estonia.

Department of Physics, Tokyo Institute of Technology, 1-12-1 Ookayama, Meguro-ku, Tokyo 152-8551, Japan.

出版信息

Rep Prog Phys. 2023 Feb 1;86(2). doi: 10.1088/1361-6633/ac9cef.

Abstract

Teleparallel gravity (TG) has significantly increased in popularity in recent decades, bringing attention to Einstein's other theory of gravity. In this Review, we give a comprehensive introduction to how teleparallel geometry is developed as a gauge theory of translations together with all the other properties of gauge field theory. This relates the geometry to the broader metric-affine approach to forming gravitational theories where we describe a systematic way of constructing consistent teleparallel theories that respect certain physical conditions such as local Lorentz invariance. We first use TG to formulate a teleparallel equivalent of general relativity (GR) which is dynamically equivalent to GR but which may have different behaviors for other scenarios, such as quantum gravity. After setting this foundation, we describe the plethora of modified teleparallel theories of gravity that have been proposed in the literature. We attempt to connect them together into general classes of covariant gravitational theories. Of particular interest, we highlight the recent proposal of a teleparallel analogue of Horndeski gravity which offers the possibility of reviving all of the regular Horndeski contributions. In the second part of the Review, we first survey works in teleparallel astrophysics literature where we focus on the open questions in this regime of physics. We then discuss the cosmological consequences for the various formulations of TG. We do this at background level by exploring works using various approaches ranging from dynamical systems to Noether symmetries, and more. Naturally, we then discuss perturbation theory, firstly by giving a concise approach in which this can be applied in TG theories and then apply it to a number of important theories in the literature. Finally, we examine works in observational and precision cosmology across the plethora of proposal theories. This is done using some of the latest observations and is used to tackle cosmological tensions which may be alleviated in teleparallel cosmology. We also introduce a number of recent works in the application of machine learning to gravity, we do this through deep learning and Gaussian processes, together with discussions about other approaches in the literature.

摘要

近几十年来,平移引力(TG)的受欢迎程度显著提高,这使得人们开始关注爱因斯坦的另一种引力理论。在本综述中,我们全面介绍了平移几何如何作为平移规范理论以及规范场理论的所有其他性质而发展起来。这将该几何与形成引力理论的更广泛的度规 - 仿射方法联系起来,在这种方法中,我们描述了一种构建符合某些物理条件(如局部洛伦兹不变性)的一致平移理论的系统方法。我们首先使用TG来构建广义相对论(GR)的平移等效理论,该理论在动力学上等同于GR,但在其他情况下(如量子引力)可能具有不同的行为。奠定这一基础后,我们描述了文献中提出的大量修正平移引力理论。我们试图将它们联系在一起,形成协变引力理论的一般类别。特别值得关注的是,我们强调了最近提出的霍恩德斯基引力的平移类似物,它提供了恢复所有常规霍恩德斯基贡献的可能性。在综述的第二部分,我们首先概述平移天体物理学文献中的工作,重点关注该物理领域中的开放性问题。然后,我们讨论TG各种表述的宇宙学后果。我们通过探索使用从动力系统到诺特定理对称性等各种方法的研究来在背景层面进行此操作。自然地,我们接着讨论微扰理论,首先给出一种可应用于TG理论的简洁方法,然后将其应用于文献中的一些重要理论。最后,我们研究众多提出的理论在观测宇宙学和精确宇宙学方面的工作。这是通过一些最新观测来完成的,并用于解决在平移宇宙学中可能得到缓解的宇宙学张力。我们还介绍了一些最近在机器学习应用于引力方面的工作,我们通过深度学习和高斯过程来进行介绍,并讨论文献中的其他方法。

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