Recursive Cosmogenesis

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1. Verfasser: Benjamin Kleinhans, Benjamin Kleinhans-Borden
Format: Recurso digital
Veröffentlicht: Zenodo 2025
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author Benjamin Kleinhans, Benjamin Kleinhans-Borden
author_facet Benjamin Kleinhans, Benjamin Kleinhans-Borden
contents <p>We propose a recursive framework for cosmological evolution, where black hole singularities undergo quantum bounces that seed new universes with stochastically mutated physical constants. This process generates a branching multiverse governed by a Markovian transition kernel over law-space. We derive novel equations that formalize mutation, selection, and recursive feedback within this structure. A cosmological fitness function favors universes that efficiently produce black holes, giving rise to a form of natural selection over physical laws. We further extend the model to account for observer emergence, linking consciousness to entropy-supported recursive information loops. Our approach unifies rotating bounce dynamics, modified Friedmann cosmology, and law-space statistics into a self-consistent theory of recursive cosmogenesis.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15833790
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Recursive Cosmogenesis
Benjamin Kleinhans, Benjamin Kleinhans-Borden
Physical cosmology
Quantum physics
<p>We propose a recursive framework for cosmological evolution, where black hole singularities undergo quantum bounces that seed new universes with stochastically mutated physical constants. This process generates a branching multiverse governed by a Markovian transition kernel over law-space. We derive novel equations that formalize mutation, selection, and recursive feedback within this structure. A cosmological fitness function favors universes that efficiently produce black holes, giving rise to a form of natural selection over physical laws. We further extend the model to account for observer emergence, linking consciousness to entropy-supported recursive information loops. Our approach unifies rotating bounce dynamics, modified Friedmann cosmology, and law-space statistics into a self-consistent theory of recursive cosmogenesis.</p>
title Recursive Cosmogenesis
topic Physical cosmology
Quantum physics
url https://doi.org/10.5281/zenodo.15833790