The Inactive Core Mechanical Model: A Mechanical Reinterpretation of Black Hole Dynamics, Information Conservation, and Localized Big Bang Recycling

Standard astrophysical models depict black holes as infinite gravitational singularities capable of irreversibly swallowing matter and radiation, introducing the unresolved Black Hole Information Paradox. This paper presents the Inactive Core Mechanical Model, an alternative macroscopic and mechanical framework grounded in classical equilibrium, fluid dynamics, and opposing force interactions. The primary mechanical thesis is demonstrated via the Circular Inward-Facing Magnetic Ring Model: when identical magnetic poles (North–North) are arranged in a ring facing inward, they generate an impenetrable repulsive pressure barrier in the center (an inactive, empty void), while outward-facing opposite poles (South) connect with external matter. Matter disintegrates along the perimeter into a high-temperature plasma accretion disk rather than entering the core. Accumulated mass over eons eventually breaches the critical balance, triggering a localized Big Bang recoil that mechanically recycles cosmic matter into new star systems.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-24
DOI
https://doi.org/10.5281/zenodo.22934674
Primary Topic
Astrophysical Phenomena and Observations
Type
article
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The Inactive Core Mechanical Model: A Mechanical Reinterpretation of Black Hole Dynamics, Information Conservation, and Localized Big Bang Recycling

Kadam Anmol kadam
Zenodo (CERN European Organization for Nuclear Research)
Astrophysical Phenomena and Observations
article

The Inactive Core Mechanical Model: A Mechanical Reinterpretation of Black Hole Dynamics, Information Conservation, and Localized Big Bang Recycling

Kadam Anmol kadam
article en

Abstract

Standard astrophysical models depict black holes as infinite gravitational singularities capable of irreversibly swallowing matter and radiation, introducing the unresolved Black Hole Information Paradox. This paper presents the Inactive Core Mechanical Model, an alternative macroscopic and mechanical framework grounded in classical equilibrium, fluid dynamics, and opposing force interactions. The primary mechanical thesis is demonstrated via the Circular Inward-Facing Magnetic Ring Model: when identical magnetic poles (North–North) are arranged in a ring facing inward, they generate an impenetrable repulsive pressure barrier in the center (an inactive, empty void), while outward-facing opposite poles (South) connect with external matter. Matter disintegrates along the perimeter into a high-temperature plasma accretion disk rather than entering the core. Accumulated mass over eons eventually breaches the critical balance, triggering a localized Big Bang recoil that mechanically recycles cosmic matter into new star systems.

Zenodo (CERN European Organization for Nuclear Research)
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Astrophysical Phenomena and Observations
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The Inactive Core Mechanical Model: A Mechanical Reinterpretation of Black Hole Dynamics, Information Conservation, and Localized Big Bang Recycling — Kadam Anmol kadam · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS