Theoretical framework reveals triadic modes of stabilization, activation, and transport in coherence-governed systems, highlighting a unified bridge between physical and informational dynamics.
This paper develops a triadic organizational structure for coherence-governed systems in which stabilization, activation, and transport arise as intrinsic modes of behavior within a common constraint-governed configuration space. Rather than treating these modes as independent mechanisms, the paper identifies them as distinct expressions of a shared underlying organization. In physical systems, the triad appears as relaxation, sustained activation, and transport or propagation. In informational systems, the corresponding roles appear as inference and recovery, storage and persistence, and transmission. Within the Coherence Geometry framework, these correspondences are expressed operationally through Coherence-Driven Inference and Recovery (CDIR), Coherence-Driven Information Storage (CDIS), and Coherence-Driven Information Transmission (CDIT). The resulting structure provides a bridge between physical and informational descriptions while preserving their common coherence-governed basis. The analysis is intended to be structural rather than implementation-specific. It does not depend on a particular numerical algorithm, physical realization, communication architecture, or information-processing implementation. Instead, it identifies a recurring constraint-driven organization that can be instantiated across multiple physical, informational, and computational domains. Internal reference: CGI-RSR-000036.
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B. Petersen (2026) studied this question.
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