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February 2, 2026Open Access

Part 10Hong's Phase-Open Dynamics: Structural Origin of Schrödinger Evolution, Uncertainty, and Cosmic Background Fluctuations

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SHSeunghyun Hong

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Overview

This work uncovers a structural theory on wave dynamics, revealing phase-open effects in cosmology and quantum behavior.

Key Points

  • The aim is to propose a unified structural theory explaining quantum and cosmological phenomena based on wave dynamics.
  • Developed a framework for wave dynamics distinguishing between phase-closed and phase-open processes.
  • Analyzed structural implications for Schrödinger evolution and uncertainty relations without modifying underlying quantum mechanics.
  • Integrated discrete geometry with wave dynamics to derive connections between microscopic and macroscopic phenomena.
  • Phase-closed processes yield stationary states, while phase-open processes generate background fluctuations.
  • Heisenberg-type uncertainty relations arise from phase openness rather than measurement or operator assumptions.
  • Predicted scaling relations between microscopic dynamics and cosmological phenomena, suggesting rare particle-like states in a largely phase-open universe.

Cite This Study

Seunghyun Hong (2026) studied this question.

synapsesocial.com/papers/6980fcb6c1c9540dea80e8a6https://doi.org/10.5281/zenodo.18410910
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