
TL;DR
This paper investigates the possibility that spacetime is a condensate, inspired by Bose-Einstein Condensate physics, proposing a new perspective on quantum gravity and the microscopic structure of spacetime.
Contribution
It introduces a novel approach viewing spacetime as a condensate, inspired by BEC physics, and explores implications for quantum gravity and the fundamental nature of spacetime.
Findings
Proposes spacetime as a condensate without knowing its 'atoms'
Draws parallels between BEC experiments and cosmological models
Discusses advantages, pitfalls, and implications of the condensate hypothesis
Abstract
We explore further the proposal that general relativity is the hydrodynamic limit of some fundamental theories of the microscopic structure of spacetime and matter, i.e., spacetime described by a differentiable manifold is an emergent entity and the metric or connection forms are collective variables valid only at the low energy, long wavelength limit of such micro-theories. In this view it is more relevant to find ways to deduce the microscopic ingredients of spacetime and matter from their macroscopic attributes than to find ways to quantize general relativity because it would only give us the equivalent of phonon physics, not the equivalents of atoms or quantum electrodyanmics. It may turn out that spacetime is merely a representation of collective state of matter in some limiting regime of interactions, which is the view expressed by Sakharov. In this talk, working within the…
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