德西特的波函数/ s矩阵技术

P. Benincasa
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引用次数: 7

摘要

平面空间物理受到洛伦兹不变性、局部性、统一性和因果性等基本原理的高度约束。这在散射振幅的结构中清晰可见。对于在不断扩大的背景中发生的过程,我们没有同样的理解水平,即使在德西特空间的情况下也是如此。在这次演讲中,我将简要介绍一些旨在填补这一空白的近期努力。我将讨论在理解微扰状态下宇宙的Bunch-Davies波函数的解析结构方面的一些新结果,它应该满足的一些基本约束以及来自潜在组合结构的一些一般见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wavefunctionals/S-matrix techniques in de Sitter
Flat-space physics is highly constrained by basic principles such as Lorentz invariance, locality, unitarity and causality. This is neatly seen in the structure of scattering amplitudes. For processes occurring in an expanding background we do not have the same level of understanding, not even in the case of de Sitter space. In this talk I provide a brief account of some of the recent efforts which aim to fill this gap. I will discuss some novel results in the understanding of the analytic structure of the Bunch-Davies wavefunction(al) of the universe in the perturbative regime, some fundamental constraints that it ought to satisfy as well as some general insights coming from an underlying combinatorial structure.
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