论文标题
真空的宇宙学
Cosmology from the vacuum
论文作者
论文摘要
我们认为,全息图的标准工具可用于描述宇宙学的完全非扰动的微观模型,在这种模型中,加速膨胀的时期可能是由于时间依赖性标量场的正势能量朝向具有负潜力的区域的积极势能所致。在这些模型中,基本的宇宙常数为负,宇宙最终以时间反转的对称方式回忆。微观描述自然会为宇宙学选择一个特殊的状态。在此框架中,宇宙学时空中的物理学对于渐近平面物中的真空物理是双重的,因为背景空间和可观察到的意义是通过分析延续相关。双时空到处都是弱弯曲的,因此,可以通过有效的现场理论在双重图片中计算出任何宇宙学可观察物,而无需详细了解紫外线完成或大爆炸附近的物理学。特别是,尽管通货膨胀可以解释宇宙学中扰动的起源,但可以从双重图片中推导出扰动,而无需任何通货膨胀潜力。
We argue that standard tools of holography can be used to describe fully non-perturbative microscopic models of cosmology in which a period of accelerated expansion may result from the positive potential energy of time-dependent scalar fields evolving towards a region with negative potential. In these models, the fundamental cosmological constant is negative, and the universe eventually recollapses in a time-reversal symmetric way. The microscopic description naturally selects a special state for the cosmology. In this framework, physics in the cosmological spacetime is dual to the vacuum physics in a static planar asymptotically AdS Lorentzian wormhole spacetime, in the sense that the background spacetimes and observables are related by analytic continuation. The dual spacetime is weakly curved everywhere, so any cosmological observables can be computed in the dual picture via effective field theory without detailed knowledge of the UV completion or the physics near the big bang. In particular, while inflation may explain the origin of perturbations in the cosmology picture, the perturbations can be deduced from the dual picture without any knowledge of the inflationary potential.