【2h】

Brane-World Gravity

机译:布雷恩世界引力

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摘要

The observable universe could be a 1+3-surface (the “brane”) embedded in a 1+3+d-dimensional spacetime (the “bulk”), with Standard Model particles and fields trapped on the brane while gravity is free to access the bulk. At least one of the d extra spatial dimensions could be very large relative to the Planck scale, which lowers the fundamental gravity scale, possibly even down to the electroweak (∼ TeV) level. This revolutionary picture arises in the framework of recent developments in M theory. The 1+10-dimensional M theory encompasses the known 1+9-dimensional superstring theories, and is widely considered to be a promising potential route to quantum gravity. At low energies, gravity is localized at the brane and general relativity is recovered, but at high energies gravity “leaks” into the bulk, behaving in a truly higher-dimensional way. This introduces significant changes to gravitational dynamics and perturbations, with interesting and potentially testable implications for high-energy astrophysics, black holes, and cosmology. Brane-world models offer a phenomenological way to test some of the novel predictions and corrections to general relativity that are implied by M theory. This review analyzes the geometry, dynamics and perturbations of simple brane-world models for cosmology and astrophysics, mainly focusing on warped 5-dimensional brane-worlds based on the Randall-Sundrum models. We also cover the simplest brane-world models in which 4-dimensional gravity on the brane is modified at low energies — the 5-dimensional Dvali-Gabadadze-Porrati models. Then we discuss co-dimension two branes in 6-dimensional models.
机译:可观察到的宇宙可以是嵌入1 + 3 + d维时空(“体”)中的1 + 3表面(“叶片”),其中标准模型粒子和场被俘获在麸质上,而重力可以自由地访问批量。相对于普朗克尺度,d个额外空间维度中的至少一个可能非常大,这会降低基本重力尺度,甚至可能降至电弱(〜TeV)水平。这种革命性的画面是在M理论的最新发展框架中产生的。 1 + 10维M理论涵盖了已知的1 + 9维超弦理论,被广泛认为是实现量子引力的有希望的潜在途径。在低能量下,重力位于骨膜处,并且恢复了相对论,但在高能量下,重力以真正的高维方式“泄漏”到主体中。这给引力动力学和扰动带来了重大变化,对高能天体物理学,黑洞和宇宙学产生了有趣的且可能是可检验的含义。布雷恩世界模型提供了一种现象学方法,可以测试M理论所暗示的一些相对于广义相对论的新颖预测和修正。这篇评论分析了宇宙学和天体物理学的简单的皮尔世界模型的几何,动力学和微扰,主要集中在基于兰德尔-森德鲁姆模型的扭曲的5维皮尔世界。我们还将介绍最简单的麸皮世界模型,其中在低能量下修改了麸皮上的4维重力-5维Dvali-Gabadadze-Porrati模型。然后,我们讨论6维模型中二维的共维数。

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