Tri-Energy Cycling Cosmology (TECC): A Unified Cyclic Universe Model with Conserved Transformation Symmetry

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1. Verfasser: Gong, WenBing
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Veröffentlicht: Zenodo 2025
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author Gong, WenBing
author_facet Gong, WenBing
contents <p>We present Tri-Energy Cycling Cosmology (TECC), a non-singular, energy-conserving cosmological model in which dark energy (DE), dark matter (DM), and baryonic matter (BM) transform cyclically through a global conservation symmetry. TECC replaces the traditional expansion–dilution picture with a dynamic energy-exchange mechanism that preserves total energy at all scales. The model predicts a stable cosmic evolution without singularities, a natural resolution to wave-particle duality as an energy-density phase, and the absence of a graviton as a required mediator of gravity. We further show that TECC reproduces standard large-scale observations while offering new testable deviations, including linear offsets in experiments sensitive to intermediate-state energy redistribution. This framework provides a unified picture linking cosmological behavior with microscopic energy-density transitions, offering falsifiable predictions for upcoming precision measurements.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17697813
institution Zenodo
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publishDate 2025
publisher Zenodo
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spellingShingle Tri-Energy Cycling Cosmology (TECC): A Unified Cyclic Universe Model with Conserved Transformation Symmetry
Gong, WenBing
Tri-Energy Cycling Cosmology (TECC); energy conservation; cyclic universe; dark energy–dark matter transformation; baryonic matter coupling; non-singular cosmology; intermediate-state energy redistribution; wave–particle duality reinterpretation; graviton-free gravity; testable cosmological predictions.
<p>We present Tri-Energy Cycling Cosmology (TECC), a non-singular, energy-conserving cosmological model in which dark energy (DE), dark matter (DM), and baryonic matter (BM) transform cyclically through a global conservation symmetry. TECC replaces the traditional expansion–dilution picture with a dynamic energy-exchange mechanism that preserves total energy at all scales. The model predicts a stable cosmic evolution without singularities, a natural resolution to wave-particle duality as an energy-density phase, and the absence of a graviton as a required mediator of gravity. We further show that TECC reproduces standard large-scale observations while offering new testable deviations, including linear offsets in experiments sensitive to intermediate-state energy redistribution. This framework provides a unified picture linking cosmological behavior with microscopic energy-density transitions, offering falsifiable predictions for upcoming precision measurements.</p>
title Tri-Energy Cycling Cosmology (TECC): A Unified Cyclic Universe Model with Conserved Transformation Symmetry
topic Tri-Energy Cycling Cosmology (TECC); energy conservation; cyclic universe; dark energy–dark matter transformation; baryonic matter coupling; non-singular cosmology; intermediate-state energy redistribution; wave–particle duality reinterpretation; graviton-free gravity; testable cosmological predictions.
url https://doi.org/10.5281/zenodo.17697813