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| Formato: | Recurso digital |
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Zenodo
2026
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| Acceso en línea: | https://doi.org/10.5281/zenodo.18198840 |
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- <p>This paper proposes a reinterpretation of black holes as cosmic subdivision devices rather than terminal gravitational sinks.<br>In this framework, black holes are treated as boundary structures that enforce conditional separability of spacetime sectors. The accumulation of such single-polarity boundaries across spacetime is shown to be inherently unstable, leading to symmetry breaking, bipolarization, and inter-sector interference.<br>The Einstein–Rosen bridge is redefined as a boundary collapse interface where strict sector separation fails and effective coupling emerges. This transition provides a structural mechanism for hierarchical organization across scales, connecting local spatial structure and global cosmological patterns without introducing new fundamental laws.<br>Entropy growth is interpreted as a logarithmic increase in effective spacetime subdivisions, linking thermodynamic behavior directly to boundary accumulation rather than information loss.<br>By treating spatial and cosmic layers as scale-dependent descriptions of a unified boundary process, this work offers a conceptual framework connecting black holes, entropy, large-scale anisotropy, and cosmic structure formation.</p>