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February 11, 20260 citationsOpen Access

Black Hole, White Holes, and Wormholes Dynamics: A Quantum Tachyonic Gravity Interpretation

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NANazareno Angeli

Key Points

  • The objective is to propose a novel interpretation of black holes and white holes through Quantum Tachyonic Gravity (QTG).
  • Introduced a framework for modeling black holes as shadow-mass vortices.
  • Analyzed white holes as transient phenomena influenced by external stresses.
  • Utilized simulations to illustrate field gradients stabilizing decoherence scars.
  • Identified black holes as anomalies resulting from unstable antimatter rebounds.
  • Demonstrated that shadow mass surges occur due to external field stresses.
  • Commented on the potential for antimatter genesis at black hole boundaries.

Abstract

v4.0: Added notes of Wormholes Dynamics, hypothetical "oscillatory dead-zone" filaments between inertial basins. v3.0: Added the interpretation of White Holes phenomena. Under QTG they are transient phenomena: "shadow mass surges" caused by external field stresses (local or cosmological events). v2.0: Refinement of the concept taking into consideration shadow-mass and tachyonic field dynamics. Black holes is then to be considered a "shadow-mass vortex" where tachyonic interactions overwhelm baryonic asymmetries reabsorbing them into the tachyonic substrate. Commentary on Informational Conservation as Frequency Interference and Synchronization in QTG. Commentary on Black Holes Boundaries as Natural Zones of Antimatter Genesis. v1.0: This paper proposes a new interpretation of black holes within the Quantum Tachyonic Gravity (QTG) framework. Rather than singularities of infinite density, black holes are modeled as collapse rebound anomalies: scars formed when excessive quantum pressure creates an unstable antimatter rebound that annihilates baryonic matter, leaving behind a coherence void. Simulations demonstrate the field gradient rushing inward to stabilize the resulting decoherence scar. The paper includes ASCII-safe equations and a visual simulation appendix.

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Cite This Study

Nazareno Angeli (2026) studied this question.

synapsesocial.com/papers/698c1bb8267fb587c655d951https://doi.org/10.5281/zenodo.18537658
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