The entangled accelerating universe
Pedro F. Gonz\'alez-D\'iaz, Salvador Robles-P\'erez

TL;DR
This paper explores the deep connections between spacetime phenomena like warp drives and baby universes, revealing a T-duality symmetry and linking universe creation to quantum entanglement and Bell's inequality violations, suggesting our universe is fundamentally quantum entangled.
Contribution
It introduces a novel T-duality symmetry between warp drives and baby universes and connects universe nucleation to quantum entanglement and Bell's inequalities.
Findings
Existence of T-duality symmetry between warp drives and baby universes
Universe creation processes involve spacetime squeezing and quantum entanglement
Our universe is governed by quantum entanglement principles
Abstract
Using the known result that the nucleation of baby universes in correlated pairs is equivalent to spacetime squeezing, we show in this letter that there exists a T-duality symmetry between two-dimensional warp drives, which are physically expressible as localized de Sitter little universes, and two dimensional Tolman-Hawking and Gidding-Strominger baby universes respectively correlated in pairs, so that the creation of warp drives is also equivalent to spacetime squeezing. Perhaps more importantly, it has been also seen that the nucleation of warp drives entails a violation of the Bell's inequalities, and hence the phenomena of quantum entanglement, complementarity and wave function collapse. These results are generalized to the case of any dynamically accelerating universe filled with dark or phantom energy whose creation is also physically equivalent to spacetime squeezing and to the…
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