Author:
Mylova Maria,Moschou Marianthi,Afshordi Niayesh,Magueijo João
Abstract
Abstract
What if Big Bang was hot from its very inception? This is possible in a bimetric theory
where the source of fluctuations is thermal, requiring the model to live on a critical boundary in
the space of parameters and can be realized when an anti-DBI brane moves within an EAdS
2 ×
E
3 geometry. This setup renders the model unique, with sharp predictions for the scalar
spectral index and its running. We investigate the non-Gaussian signatures of this thermal
bimetric model, or “bi-thermal” for short. We adapt the standard calculation of
non-Gaussianities for P(X,ϕ) models to the thermal nature of the model, emphasising how the
bi-thermal peculiarities affect the calculation and alter results. This leads to precise
predictions for the shape and amplitude of the three-point function of the bi-thermal model (at
tree-level): f
local
NL = -3/2 and f
equil
NL = -2 + 4 √(3)π/9
≃ 0.4. We also discover a new shape of flattened non-gaussianity ∝
(k
1 + k
2 - k
3)-3/2 + permutations, which is expected due to the excited thermal initial
conditions. These results, along with our earlier predictions for the scalar power spectrum,
provide sharp targets for the future generation of cosmological surveys.
Subject
Astronomy and Astrophysics
Cited by
4 articles.
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