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March 12, 20261 citationsOpen Access

Cosmological Update Dynamics: A Probability Field Framework for Cosmological Structure Formation

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KYKiichi YamadaApplied Visions (United States)

Key Points

  • To introduce a new framework for understanding cosmic evolution through a probabilistic approach that accounts for structure formation.
  • Developed the Cosmological Update Dynamics (CUD) framework.
  • Formulated a unified dynamical equation for probability flow and phase-jump updates.
  • Defined cosmic evolution as the restructuring of a probability field on a statistical manifold.
  • Demonstrated that instability thresholds lead to discrete restructuring events in the probability landscape.
  • Proposed mechanisms for episodic structure formation during cosmic evolution.

Abstract

We propose Cosmological Update Dynamics (CUD), a probabilistic framework in which cosmic evolution is described as the dynamical restructuring of a probability field defined on a statistical manifold. Within this perspective, the universe is represented by a probability density ρ whose evolution follows a drift–diffusion dynamics driven by gradients of a structural instability field φ derived from the log-density variable. The framework introduces probabilistic phase-jump updates that occur when instability thresholds are exceeded, producing discrete restructuring events in the probability landscape. These updates provide a possible mechanism for episodic structure formation in cosmic evolution. The present work formulates a unified dynamical equation combining continuous probability flow and phase-jump processes: ∂tρ = ∇·(D∇ρ − μρ∇φ) + Jρ, φ. This paper presents Version 2 of the CUD framework, extending the initial proposal with a formal dynamical structure and exploring its potential implications for cosmological structure formation.

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Cite This Study

Kiichi Yamada (2026) studied this question.

synapsesocial.com/papers/69b25b0996eeacc4fcec9610https://doi.org/10.5281/zenodo.18936472
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