Contemporary physics increasingly challenges the classical assumption that information is stored locally within isolated physical systems. Quantum entanglement, relational interpretations of quantum mechanics, spacetime dynamics, and holographic approaches to information all suggest that persistence in nature may be fundamentally relational rather than object-bound. In this paper, we develop a multi-scale interpretive framework in which “memory” is understood not as internal storage within particles or systems, but as the persistence of correlations across quantum states, fields, spacetime geometry, biological organization, and cognitive processes.At the quantum level, relational correlations and entanglement are examined as forms of distributed informational persistence that do not require localized memory carriers. At the spacetime level, curvature and holographic structure are interpreted as persis-tent geometric constraints encoding the historical influence of interactions. Extending beyond physics, biological systems are treated as active stabilizers of relational infor-mation through genetic, metabolic, and neural organization, while consciousness is ex-plored as a higher-order form of integrated relational memory arising from hierarchical informational integration.The framework integrates established theoretical approaches—including relational quantum mechanics, holographic information theory, decoherence theory, and inte-grated information theory—with clearly demarcated speculative hypotheses concerning field-mediated persistence, frequency-based encoding, and cross-scale informational coherence. Throughout, explicit distinctions are maintained between accepted physical formalism, interpretive extension, and speculative proposal.Rather than introducing a new physical theory, this work proposes a unifying concep-tual platform for understanding information persistence across scales. Within this per-spective, memory becomes a distributed structural feature of reality itself: not a proper-ty stored inside isolated objects, but a persistent relational constraint shaping how physical, biological, and cognitive systems evolve through time.
Darko Kantoci (Fri,) studied this question.
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