The Birth of Mass from Spacetime Expansion

Fuente: Zenodo
Gespeichert in:
Bibliographische Detailangaben
1. Verfasser: Leangtragul, Danai
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2025
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866901186986115072
author Leangtragul, Danai
author_facet Leangtragul, Danai
contents <p>This paper presents a theoretical framework in which mass arises from the geometric confinement of energy during the early expansion of the universe (Big Bang). It proposes that spacetime did not expand uniformly across all regions; instead, certain localized zones resisted outward expansion, generating pockets of inward-folding curvature. These curved regions trapped propagating energy waves, giving rise to standing waveforms that constituted the first stable particles, such as protons (small curvature pockets). When these particles aggregated, their cumulative curvature deepened, eventually leading to the formation of black holes. Zones where wave propagation becomes entirely suppressed due to extreme inward geometry. In this view, mass is not an intrinsic property of energy but an emergent phenomenon resulting from the restriction of energy's ability to propagate. The framework also exhibits compatibility with quantum mechanical principles, interpreting standing wave formations as outcomes of boundary conditions imposed by cosmic geometry. This perspective offers a unified geometric interpretation of mass, gravity, and energy transformation rooted in the structure of spacetime itself.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17461413
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle The Birth of Mass from Spacetime Expansion
Leangtragul, Danai
curvelock
geometry-induced mass
spacetime confinement
general relativity
spacetime curvature
particle genesis
expansion resistance
black hole microstructure
emergent mass
geometric confinement
trapped energy
<p>This paper presents a theoretical framework in which mass arises from the geometric confinement of energy during the early expansion of the universe (Big Bang). It proposes that spacetime did not expand uniformly across all regions; instead, certain localized zones resisted outward expansion, generating pockets of inward-folding curvature. These curved regions trapped propagating energy waves, giving rise to standing waveforms that constituted the first stable particles, such as protons (small curvature pockets). When these particles aggregated, their cumulative curvature deepened, eventually leading to the formation of black holes. Zones where wave propagation becomes entirely suppressed due to extreme inward geometry. In this view, mass is not an intrinsic property of energy but an emergent phenomenon resulting from the restriction of energy's ability to propagate. The framework also exhibits compatibility with quantum mechanical principles, interpreting standing wave formations as outcomes of boundary conditions imposed by cosmic geometry. This perspective offers a unified geometric interpretation of mass, gravity, and energy transformation rooted in the structure of spacetime itself.</p>
title The Birth of Mass from Spacetime Expansion
topic curvelock
geometry-induced mass
spacetime confinement
general relativity
spacetime curvature
particle genesis
expansion resistance
black hole microstructure
emergent mass
geometric confinement
trapped energy
url https://doi.org/10.5281/zenodo.17461413