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June 21, 20260 citationsOpen Access

Cyclic Infodynamics: Informational Invariance, Non-Singular Quantum Gravity, and Unified Computational Field Mechanics

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BBBakhtiyar Baimashuly

Key Points

  • The aim is to unify quantum dynamics, physical matter, and spacetime geometry through an informational invariance principle.
  • Developed a dual-layer framework with a Scientific Core and Interpretive Topology.
  • Utilized a quantum-information approach and the holographic principle to derive physical laws.
  • Introduced a non-singular quantum-gravitational operator to eliminate gravitational singularities.
  • Established a non-singular cosmological model governed by quantum-informational principles.
  • Defined dark energy as an expansion scaling law in a 5D address-space framework.
  • Formulated elementary particles as localized address packets with mass generation linked to the Higgs mechanism.

Abstract

We propose a unified dual-layer framework in which quantum dynamics, physical matter, and spacetime geometry emerge from an informational invariance principle defined on a global Hilbert space. Within the first layer (Scientific Core), utilizing a quantum-information approach and the Bekenstein-Hawking holographic principle, we demonstrate that physical laws and the Schrödinger equation are necessary consequences of information conservation. Physical matter is modeled as an emergent dynamic projection of a fundamental informational invariant managed within a 5D spacetime bulk. By introducing a discrete informational address-pitch regularization, we derive a non-singular quantum-gravitational operator that eliminates gravitational singularities at the Planck scale. We extend this formalization to resolve quantum non-locality through common 5D address-pointers and define Dark Energy as a cosmological address-space expansion scaling law. Furthermore, we formulate a non-singular cosmological model governed by a quantum-informational watchdog boundary condition and cryptographic phase-hashing on the cosmological horizon. Finally, we formalize elementary particles as localized address packets, where mass generation is derived as a background daemon throttling process (the Higgs mechanism) and particle annihilation is mathematically mapped as a vacuum memory deallocation. The second layer (Interpretive Topology) reformulates space, time, and multiplicity as representations of a self-consistent, cyclic informational loop utilizing Chern-Simons gauge structures and Witten-Jones topological knot invariants.

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Cite This Study

Bakhtiyar Baimashuly (2026) studied this question.

synapsesocial.com/papers/6a3780b224f042ddf4c5ab1bhttps://doi.org/10.5281/zenodo.20766956
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