Resonance Physics: Invariants → Modes → Stability (Ontology of Process: from Medium to Particles)
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Resonance Physics: Invariants, Modes, and StabilityThis work presents a compact conceptual framework of “resonance physics” focused on the relation between *what is conserved (invariants) and how conservation is realized* (modes). The core claim is that physical “objects” can be treated as stable phase-regimes (standing-wave structures) emerging from a deeper oscillatory medium-field.The document distinguishes three layers of description: 1) Invariants: energy–momentum, angular momentum, charges, and symmetry constraints. 2) Modes: phase synchronization, resonance frequencies, standing-wave geometry, and stability conditions. 3) Stability criterion: compatibility between modes and invariants, where stability is interpreted as coherent realization of conservation laws.The goal is to provide an alternative explanatory model that emphasizes mechanisms (phase coherence and resonance) rather than purely particle-formal descriptions, and to outline a consistent language for further theoretical development and interdisciplinary discussion.Maksym Marnov (Alchimist) Berlin, 11.01.2026



