A Cyclic Pre-Bang Sequence: Solid → Vapor → Liquid → Radiation → Plasma → Matter

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Autore principale: Simpson, Drew
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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contents <p>TITLE:<br>A Cyclic Pre-Bang Sequence: Solid → Vapor → Liquid → Radiation → Plasma → Matter</p> <p>AUTHOR:<br>Drew Simpson, Independent Researcher (Ontario, Canada)</p> <p>DESCRIPTION:<br>This document introduces a continuous, cyclic sequence describing the evolution of the Universe before and during the event commonly interpreted as the Big Bang. Instead of beginning from a singularity, the Universe transitions smoothly through a series of physical phases:</p> <p>1. Phase 0S – Solid Symmetry:<br>A highly ordered, low-entropy state with maximum coherence and no internal differentiation.</p> <p>2. Phase Xg – Vapor/Continuum:<br>A deformable, stress-bearing pre-liquid medium, still coherent but capable of flow.</p> <p>3. Phase L – Liquid State:<br>A viscous, entropy-producing phase where internal coherence relaxes. This phase is responsible for the gradual release of stored potential into energy.</p> <p>4. Phase R – Radiation (The Big Bang Transition):<br>The Big Bang is reinterpreted here not as a beginning, but as a phase change when stored coherence converts into free quantum radiation.</p> <p>5. Phase P – Plasma:<br>Hot ionized matter fills space; this corresponds to the well-understood early hot universe.</p> <p>6. Phase M – Matter:<br>Atoms form, cooling continues, and cosmic structure develops.</p> <p>The model ensures:<br>- No singularity is required<br>- Entropy increases smoothly and naturally<br>- Expansion follows a bounded density equation<br>- Standard plasma and matter eras are recovered<br>- The Big Bang is treated as a physical transformation rather than a creation event</p> <p>This framework completes a full cosmological cycle: order → flow → dissipation → radiation → plasma → matter, forming the observable universe.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17539361
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle A Cyclic Pre-Bang Sequence: Solid → Vapor → Liquid → Radiation → Plasma → Matter
Simpson, Drew
Cosmology
Physical cosmology
Theoretical physics
<p>TITLE:<br>A Cyclic Pre-Bang Sequence: Solid → Vapor → Liquid → Radiation → Plasma → Matter</p> <p>AUTHOR:<br>Drew Simpson, Independent Researcher (Ontario, Canada)</p> <p>DESCRIPTION:<br>This document introduces a continuous, cyclic sequence describing the evolution of the Universe before and during the event commonly interpreted as the Big Bang. Instead of beginning from a singularity, the Universe transitions smoothly through a series of physical phases:</p> <p>1. Phase 0S – Solid Symmetry:<br>A highly ordered, low-entropy state with maximum coherence and no internal differentiation.</p> <p>2. Phase Xg – Vapor/Continuum:<br>A deformable, stress-bearing pre-liquid medium, still coherent but capable of flow.</p> <p>3. Phase L – Liquid State:<br>A viscous, entropy-producing phase where internal coherence relaxes. This phase is responsible for the gradual release of stored potential into energy.</p> <p>4. Phase R – Radiation (The Big Bang Transition):<br>The Big Bang is reinterpreted here not as a beginning, but as a phase change when stored coherence converts into free quantum radiation.</p> <p>5. Phase P – Plasma:<br>Hot ionized matter fills space; this corresponds to the well-understood early hot universe.</p> <p>6. Phase M – Matter:<br>Atoms form, cooling continues, and cosmic structure develops.</p> <p>The model ensures:<br>- No singularity is required<br>- Entropy increases smoothly and naturally<br>- Expansion follows a bounded density equation<br>- Standard plasma and matter eras are recovered<br>- The Big Bang is treated as a physical transformation rather than a creation event</p> <p>This framework completes a full cosmological cycle: order → flow → dissipation → radiation → plasma → matter, forming the observable universe.</p>
title A Cyclic Pre-Bang Sequence: Solid → Vapor → Liquid → Radiation → Plasma → Matter
topic Cosmology
Physical cosmology
Theoretical physics
url https://doi.org/10.5281/zenodo.17539361