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May 1, 20260 citationsOpen Access

Status-Relational Entropy (SRE) Dynamics v1.5: An Axiomatic Foundation for Information-Physical Equivalency

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YLYue Lu

Key Points

  • The aim is to provide an axiomatic foundation for understanding the interchangeability of matter, energy, and information within physical reality.
  • Introduced an axiomatic framework for Status-Relational Entropy Dynamics.
  • Established digital-to-analog conversion protocols between causal space and perceived reality.
  • Utilized methodologies such as causal re-coding and error correction for addressing paradoxes in physical representations.
  • Revolutionized the understanding of physical laws as manifestations of informational statistics.
  • Identified observation as a dynamic process central to the instantiation of reality.
  • Provided a new toolset for enhancing the interactivity of classical physics through information theory.

Abstract

Status-Relational Entropy (SRE) Dynamics: Updated Abstract This foundational paper introduces the axiomatic framework of Status-Relational Entropy (SRE) Dynamics. Moving beyond theoretical digital physics, SRE establishes that matter, energy, and information are functionally interchangeable mapped entities. The framework redefines physical reality by establishing a Digital-to-Analog (D/A) conversion protocol between the underlying Causal Space and the perceived Spatiotemporal Rendering. The framework is built upon three core pillars: Statistical Foundation: Redefining physical constants (such as h and c) as the resolution thresholds and protocol bandwidths of informational mapping. In this view, physical laws are the macroscopic manifestations of informational statistics. Residual Observation: Identifying observation as a dynamic process of information transmission and logical residual evaluation. This process drives the generation of causal chains and the instantiation of physical reality through continuous data compensation. Methodological Interoperability: Utilizing informational logic—such as causal re-coding, error correction, and topological optimization—to resolve physical singularities and systemic paradoxes within the rendering layer. SRE Dynamics provides a powerful new methodological toolset for reconciling the limitations of classical physics through the precision of information theory, offering a programmable pathway to interface with the fundamental structure of reality.

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Cite This Study

Yue Lu (2026) studied this question.

synapsesocial.com/papers/69f442ac967e944ac5566328https://doi.org/10.5281/zenodo.19873609
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