The emergent Big Bang scenario
arXiv:2602.02646 · doi:10.1103/b88s-k479
Abstract
This paper proposes a new avenue for understanding the cosmological singularity. The standard cosmological model contains a generic initial singularity usually referred to as the {\em big bang}. Herein, we present a novel idea to extend the description of our Universe beyond this limit. The proposal relies on rewriting physics in a purely Riemannian, {\em i.e.} locally Euclidean, four-dimensional space and the emergence of Lorentzian patches owing to the interaction of all matter fields to a clock field that is responsible for a signature change. If our Universe is contained within one of these patches, the initial singularity is replaced by a smooth boundary on which the signature of the physical metric flips. In this paper, we first define the model and draw the necessary conditions on its arbitrary functions for solutions to exist. Next, we prove the existence of solutions that lead to an emergent universe with a primordial (almost) de Sitter phase. To finish, we discuss the consequences of this construction for the universe on scales much larger than our observable Universe: a large ``Euclidean sea'' in which Lorentzian islands locally emerge and host an expanding universe potentially similar to ours. While speculative, this scenario has specific features that can be tested, and the present paper sets the basis for further phenomenological investigations.
9 pages, 6 figures
References in corpus (17)
- Dynamics of collapsing and exploding Bose-Einstein condensates
- Cosmic Evolution in a Cyclic Universe
- Loop Quantum Gravity
- A Cyclic Model of the Universe
- Loop Quantum Cosmology
- The Emergent Universe: inflationary cosmology with no singularity
- Metric Signature Transitions in Optical Metamaterials
- On the emergence of Lorentzian signature and scalar gravity
- Trans-Planckian physics and signature change events in Bose gas hydrodynamics
- From configuration to dynamics -- Emergence of Lorentz signature in classical field theory
- Topology beyond the horizon: how far can it be probed?
- Effective Minkowski to Euclidean signature change of the magnon BEC pseudo-Goldstone mode in polar 3He
- Emergence of time in power-counting renormalizable Riemannian theory of gravity
- Emergent Lorentz Signature, Fermions, and the Standard Model
- Smooth metrics can hide thin shells
- Singularity at the demise of a black hole
- Emergent Lorentzian dispersion relations from a Euclidean scalar-tensor theory