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November 19, 20250 citationsOpen Access

Physical Memory: A Structural Definition Based on Complex Spacetime and Closed-Surface Patterns

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KTKonno Tetsuo

Key Points

  • Memory is defined as a fundamental physical quantity arising from closed-surface dynamics, linking multiple memory forms.
  • Key components include stress fields and a geometric ontology that integrates various memory types.
  • The approach clarifies the relationship between irreversible physical space and reversible internal dimensions.
  • Implications suggest a new understanding of memory that encompasses both physical and cosmological structures.

Abstract

This paper proposes a formal physical definition of memory based on complex spacetime and closed-surface pattern theory.Using the representation Z=X+ict, the real axis corresponds to irreversible physical space, while the imaginary axis represents a reversible internal dimension where pattern states evolve.The physical memory of a closed surface is defined as the integrated pattern history: M=∫P(t) dt. When these accumulated patterns become fixed on the real axis, they appear as material memory, spatial curvature, stress fields, or cosmological structure.This framework unifies material memory, spatial memory, biological memory, observation-induced memory, and cosmic pattern retention under a single geometric ontology.The paper establishes memory as a fundamental physical quantity arising from closed-surface dynamics.

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Cite This Study

Konno Tetsuo (2025) studied this question.

synapsesocial.com/papers/6924fee0c0ce034ddc351335https://doi.org/10.5281/zenodo.17647017
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