论文标题

宇宙语音子:亚匹配量表上的对称性和振幅

The Cosmological Phonon: Symmetries and Amplitudes on Sub-Horizon Scales

论文作者

Grall, Tanguy, Jazayeri, Sadra, Stefanyszyn, David

论文摘要

与无质量旋转的颗粒相反,标量并非受到单位性和位置的严重约束。脱壳,不需要规格对称性才能写下明显的局部理论,而在壳上一致的分解是微不足道的。相反,标量的有用分类方案基于他们可以非线性实现的对称性。在宇宙学中洛伦兹的促进的动机中,我们在本文中分类了换档对称标量的可能对称性,该标量假定非线性地意识到Lorentz的增长为例如,例如在通货膨胀的EFT中。我们的分类方法是代数;在COSET构造和逆Higgs约束下进行指导。我们重新发现了超级流体和玻璃融合类中的一些已知的语音理论,并发现了一种新的galileid理论,我们称之为$ \ textit {Extended galileid} $。通用玻璃体对应于Galileon标量EFT的破裂相,我们的扩展玻璃体对应于特殊的子集,其中每个galileon耦合都由其他对称性固定。我们讨论了理论的破碎阶段,该理论也接受了围绕庞加莱不变真空吸引力的扰动理论,我们表明,所谓的特殊EFT,DBI标量和特殊的Galileon不承认这样的阶段。专注于DBI,我们对此提供了详细的说明,表明当理论围绕通货膨胀eft所用的超流体背景扩展时,散射幅度是秘密的庞加莱不变性。我们指出,DBI是共同传说的例外,即宇宙学相关器的总能极的残基与振幅成正比。我们还讨论了$ 2 \ rightarrow 2 $散射幅度的必然性,当增压被自发破碎,即即使在有变化对称性的情况下,这种理论也不允许Adler Zeros和概括。

In contrast to massless spinning particles, scalars are not heavily constrained by unitarity and locality. Off-shell, no gauge symmetries are required to write down manifestly local theories, while on-shell consistent factorisation is trivial. Instead a useful classification scheme for scalars is based on the symmetries they can non-linearly realise. Motivated by the breaking of Lorentz boosts in cosmology, in this paper we classify the possible symmetries of a shift-symmetric scalar that is assumed to non-linearly realise Lorentz boosts as, for example, in the EFT of inflation. Our classification method is algebraic; guided by the coset construction and inverse Higgs constraints. We rediscover some known phonon theories within the superfluid and galileid classes, and discover a new galileid theory which we call the $\textit{extended galileid}$. Generic galileids correspond to the broken phase of galileon scalar EFTs and our extended galileids correspond to special subsets where each galileon coupling is fixed by an additional symmetry. We discuss the broken phase of theories that also admit a perturbation theory around Poincaré invariant vacua and we show that the so-called exceptional EFTs, the DBI scalar and special galileon, do not admit such a broken phase. Concentrating on DBI we provide a detailed account of this showing that the scattering amplitudes are secretly Poincaré invariant when the theory is expanded around the superfluid background used in the EFT of inflation. We point out that DBI is an exception to the common lore that the residue of the total energy pole of cosmological correlators is proportional to the amplitude. We also discuss the inevitability of poles in $2 \rightarrow 2$ scattering amplitudes when boost are spontaneously broken meaning that such theories do not admit Adler zeros and generalisations even in the presence of a shift symmetry.

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