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Main Author: Bergmann, Gordon
Format: Recurso digital
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Published: Zenodo 2026
Online Access:https://doi.org/10.5281/zenodo.18888331
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author Bergmann, Gordon
author_facet Bergmann, Gordon
contents <p>In classical multiverse models (Eternal Inflation, String Landscape), bubble universes remain isolated, preventing information exchange and stable collisions. Bergmann Bounce Relativity (BBR) integrates stochastic mini-bounces into General Relativity, enabling overlaps between bubbles. These bounce overlaps create connected multiverses, where information (quantum states, gravitational waves) is exchanged and collisions proceed in a stabilized manner without singularities or destruction. This paper derives the bounce-overlap metric, analyzes stability during bubble collisions, compares with isolated bubble models, and provides testable predictions (e.g. CMB rings, GW signatures from overlaps). BBR/BMC transform multiverses from an isolated ensemble into a networked, bounce-driven system.</p>
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publishDate 2026
publisher Zenodo
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spellingShingle Connected Multiverses via Mini-Bounces: Information Exchange and Bubble Collisions in BBR
Bergmann, Gordon
<p>In classical multiverse models (Eternal Inflation, String Landscape), bubble universes remain isolated, preventing information exchange and stable collisions. Bergmann Bounce Relativity (BBR) integrates stochastic mini-bounces into General Relativity, enabling overlaps between bubbles. These bounce overlaps create connected multiverses, where information (quantum states, gravitational waves) is exchanged and collisions proceed in a stabilized manner without singularities or destruction. This paper derives the bounce-overlap metric, analyzes stability during bubble collisions, compares with isolated bubble models, and provides testable predictions (e.g. CMB rings, GW signatures from overlaps). BBR/BMC transform multiverses from an isolated ensemble into a networked, bounce-driven system.</p>
title Connected Multiverses via Mini-Bounces: Information Exchange and Bubble Collisions in BBR
url https://doi.org/10.5281/zenodo.18888331