An Open Universe Hypothesis: Dark Energy and Dark Matter as Environmental Effects of a Branching Multiverse Gravitational Wave Background

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Autore principale: Zambonino-Vázquez, Francisco-Javier
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2026
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author Zambonino-Vázquez, Francisco-Javier
author_facet Zambonino-Vázquez, Francisco-Javier
contents <p class="MsoNormal"><span>I propose an open‑universe hypothesis in which dark energy and dark matter are not independent, self‑contained fields, but macroscopic manifestations of the gravitational influence exercised by a <strong>branching multiverse</strong> whose structure and dynamics are governed by kinetic‑impact fractal branching of the inflaton field. The observable universe is interpreted as an open subsystem continuously shaped by a coherent, long‑wavelength gravitational wave background generated by neighboring cosmological domains that evolve, interact, and periodically collapse via kinetic‑impact events in the inflaton landscape. This environment acts as a unified external forcing term that generates the effects we empirically describe as the cosmological constant </span><span></span><span> and dark matter, while leaving the standard Einstein and Friedmann–Lemaître equations unchanged.</span></p> <p class="MsoNormal"><span>The guiding hypothesis is that several persistent cosmological anomalies—the Hubble‑constant tension, anomalous galactic rotation curves, and the KBC local void—can be understood as correlated projections of the same branching‑multiverse environment, rather than as independent internal failures of the standard model. The framework is formulated so that it is directly falsifiable via cosmological surveys, galaxy‑scale observations, and future gravitational‑wave observatories. Connections to the kinetic‑impact fractal branching mechanism are explicitly discussed in the companion paper [Ref. 1].</span></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_20322209
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle An Open Universe Hypothesis: Dark Energy and Dark Matter as Environmental Effects of a Branching Multiverse Gravitational Wave Background
Zambonino-Vázquez, Francisco-Javier
Dark matter
dark energy
hubble tension
multiverse
brane-worlds
gravitational-wave background
radial acceleration relation
kinetic-impact branching
<p class="MsoNormal"><span>I propose an open‑universe hypothesis in which dark energy and dark matter are not independent, self‑contained fields, but macroscopic manifestations of the gravitational influence exercised by a <strong>branching multiverse</strong> whose structure and dynamics are governed by kinetic‑impact fractal branching of the inflaton field. The observable universe is interpreted as an open subsystem continuously shaped by a coherent, long‑wavelength gravitational wave background generated by neighboring cosmological domains that evolve, interact, and periodically collapse via kinetic‑impact events in the inflaton landscape. This environment acts as a unified external forcing term that generates the effects we empirically describe as the cosmological constant </span><span></span><span> and dark matter, while leaving the standard Einstein and Friedmann–Lemaître equations unchanged.</span></p> <p class="MsoNormal"><span>The guiding hypothesis is that several persistent cosmological anomalies—the Hubble‑constant tension, anomalous galactic rotation curves, and the KBC local void—can be understood as correlated projections of the same branching‑multiverse environment, rather than as independent internal failures of the standard model. The framework is formulated so that it is directly falsifiable via cosmological surveys, galaxy‑scale observations, and future gravitational‑wave observatories. Connections to the kinetic‑impact fractal branching mechanism are explicitly discussed in the companion paper [Ref. 1].</span></p>
title An Open Universe Hypothesis: Dark Energy and Dark Matter as Environmental Effects of a Branching Multiverse Gravitational Wave Background
topic Dark matter
dark energy
hubble tension
multiverse
brane-worlds
gravitational-wave background
radial acceleration relation
kinetic-impact branching
url https://doi.org/10.5281/zenodo.20322209