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July 5, 20260 citationsOpen Access

Proper-Time Phase and Signed Dissipation: A Phase-Amplitude Interface

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YYoshida

Key Points

  • The research aims to develop a framework that separates and connects coordinate time, clock frequency, and amplitude loss within a phase-amplitude interface.
  • Introduced a bookkeeping framework for phase and amplitude analysis.
  • Developed numerical scripts supporting the findings and demonstrating an inverse-problem solution.
  • Included validation figures derived from generated outputs.
  • Established connections between relativistic clock shifts and quantum phase evolution without replacing established physics.
  • Demonstrated the relevance of matter-wave interference in the context of the framework.
  • Showed how dissipative amplitude loss relates to thermodynamic entropy production.

Abstract

This upload contains the paper PDF together with a ZIP archive of the supporting LaTeX source, numerical scripts, and generated output figures. The paper presents a conservative phase-amplitude bookkeeping framework for separating coordinate time, clock frequency, locally accumulated proper-time phase, and dissipative amplitude loss. It connects standard relativistic clock shifts, quantum phase evolution, matter-wave interference, and thermodynamic entropy production without claiming to replace established physics. The included scripts and outputs support the numerical validation figures and the synthetic inverse-problem demonstration discussed in the paper.

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Cite This Study

Yoshida (2026) studied this question.

synapsesocial.com/papers/6a49f754f5d1d45b28801397https://doi.org/10.5281/zenodo.21163861
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