Conjecture on Physical Effects of the Black Hole Collapse Convergence Core (IV)

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Main Author: Tao, Mingshu
Format: Recurso digital
Published: Zenodo 2026
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_version_ 1866901403280080896
author Tao, Mingshu
author_facet Tao, Mingshu
contents <p>As the fourth part of the Black Hole and Nested Universe Conjecture series, this paper conducts an exploratory theoretical study on the microstructure, matter transport rules and stability modes of black hole wormhole channels based on general relativity, brane cosmology and quantum mechanics. Numerical verification of compact celestial parameters shows that within this conjecture, only black holes meet the critical energy density for spacetime brane local tearing. The wormhole throat radius derived from mechanical equilibrium is confirmed within the Planck scale. It is proposed that black holes can compress matter to meet the wormhole passage threshold for cross-spacetime transport. A dual-path stability framework of Planck-scale wormholes is constructed, conjecturing that wormholes can be stabilized by positive-pressure quantum degeneracy pressure. Finally, the dynamic equation of black hole mass evolution is derived to characterize its mass change under multiple physical processes. This paper is only an exploratory theoretical conjecture without definitive academic conclusions.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19916788
institution Zenodo
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publishDate 2026
publisher Zenodo
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spellingShingle Conjecture on Physical Effects of the Black Hole Collapse Convergence Core (IV)
Tao, Mingshu
Quantum physics
Theoretical physics
Astrophysics
Physical cosmology
Quantum gravity
Black holes
Wormholes
Relativity, Gravitational
Black Hole; Wormhole; Planck Scale; Spacetime Brane Tearing; Quantum Degeneracy Pressure; Wormhole Stability; Matter Transport; Nested Universe
<p>As the fourth part of the Black Hole and Nested Universe Conjecture series, this paper conducts an exploratory theoretical study on the microstructure, matter transport rules and stability modes of black hole wormhole channels based on general relativity, brane cosmology and quantum mechanics. Numerical verification of compact celestial parameters shows that within this conjecture, only black holes meet the critical energy density for spacetime brane local tearing. The wormhole throat radius derived from mechanical equilibrium is confirmed within the Planck scale. It is proposed that black holes can compress matter to meet the wormhole passage threshold for cross-spacetime transport. A dual-path stability framework of Planck-scale wormholes is constructed, conjecturing that wormholes can be stabilized by positive-pressure quantum degeneracy pressure. Finally, the dynamic equation of black hole mass evolution is derived to characterize its mass change under multiple physical processes. This paper is only an exploratory theoretical conjecture without definitive academic conclusions.</p>
title Conjecture on Physical Effects of the Black Hole Collapse Convergence Core (IV)
topic Quantum physics
Theoretical physics
Astrophysics
Physical cosmology
Quantum gravity
Black holes
Wormholes
Relativity, Gravitational
Black Hole; Wormhole; Planck Scale; Spacetime Brane Tearing; Quantum Degeneracy Pressure; Wormhole Stability; Matter Transport; Nested Universe
url https://doi.org/10.5281/zenodo.19916788