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Physical Reality as an Emergent Modular System
2026-09-25

We develop a unified framework in which physical reality emerges from the spectral properties of informational states. Starting from the density operator ρ, we construct the modular generator K = −log ρ and its spectral distribution p(k) as the fundamental objects. We demonstrate that structure, locality, geometry, dynamics, and scale arise sequentially from properties of the modular spectrum. Renormalization is reinterpreted as spectral flow, and physical phases are defined through optimal partitions of informational structure. We further show that stable spectral modes correspond to matter-like structures, while gauge symmetry emerges as an access-relative redundancy. A universal dynamical equation is formulated, governing all physical regimes in a phase-dependent manner. The framework is supported by a reproducible numerical program and extended to flavor physics, where we derive the structure of quark mixing and CP violation from spectral hierarchy. This work establishes a unified perspective in which physical structure is understood as an emergent consequence of distinguishability and spectral organization.

Ссылка для цитирования:

Nesen O. I. 2026. Physical Reality as an Emergent Modular System. PREPRINTS.RU. https://doi.org/10.24108/preprints-3116476

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