Coarse-graining deterministic event chains yields Nambu-like QFT with running ħ and IR unitarity, plus an emergent metric selected by Lovelock to Einstein gravity.
On the emergence of a classical Isotropic Universe from a Quantum $f(R)$ Bianchi Cosmology in the Jordan Frame
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abstract
We demonstrate a spontaneous tendency of quantum wave packets to become quasi-classical, providing a classical limit for the Universe dynamics. However, this limit is not maintained in the future (after a critical value of the relational time) and a spreading process is turned on. We show that the onset of an inflationary scenario is not able to make this localization stable of the wave packets for the Bianchi I model. Instead, when we implement a perturbative inflationary scenario for the isotropic Universe a mechanism of stable classicalization of the Universe emerges. This result outlines a sharp difference between the standard relativistic cosmology and a modified $f(R)$ paradigm.
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Minimal Proper Time and Deterministic Microstates: Emergent Quantum Fields and Relativistic Spacetime
Coarse-graining deterministic event chains yields Nambu-like QFT with running ħ and IR unitarity, plus an emergent metric selected by Lovelock to Einstein gravity.