Author:
Lazarev, Sergiu Vasili
Category:
Research Papers
Sub-Category:
Quantum Theory / Particle Physics
Date Published:
July 8, 2025
Keywords:
Gravitational mitosis, Logical oscillations, Central Logical Oscillators (CLOs), Subquantum information field, Non -organic life, Phase bifurcation, Cosmic replication, Fermi bubbles, Oscillatory cosmology, Structural coherence
Abstract:
Recent astrometric data from the Gaia mission reveal high-velocity stellar ejections originating from the central regions of the Milky Way. Traditionally interpreted as stellar migrations or supernova remnants, these trajectories may instead signal a deeper cosmological process: the onset of galactic mitosis. Within the framework of the TQC_NMSI model (Twin Quantum Computing – New Subquantum Information Mechanics), we propose that the Milky Way is entering a phase of mitotic division analogous to biological cell division, wherein Fermi Bubbles act as gravitationally coherent vesicles for the emergence of daughter galaxies.
This article outlines the theoretical foundations, observational evidence, and implications of galactic mitosis as an active phenomenon of cosmic-scale oscillatory logic.
We propose a novel cosmological framework where the emergence and evolution of cosmic structures are driven by coherent oscillatory replication mechanisms, not by expansion or collapse. Using observational evidence from galactic bifurcations, Fermi bubbles, filamentary structures, and non-destructive supernova events, we formulate the concept of gravitational mitosis. This process resembles biological mitosis but is governed by phase bifurcation and informational coherence at subquantum level. .../...
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