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January 23, 20260 citationsOpen Access

Coherence Capacity as the Fundamental Resource of Effective Physics

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PNPeter Nero

Key Points

  • To identify coherence capacity as a critical resource for maintaining effective physical descriptions under disturbances.
  • Utilized minimal axioms: invertible dynamics, noninjective projection, finite admissibility.
  • Proved that exhausting coherence capacity results in noninvertibility and irreversibility.
  • Connected concepts like measurement collapse and thermalization to coherence capacity transitions.
  • Established a local geometric bookkeeping for spatial variations of coherence capacity.
  • Demonstrated that coherence capacity's exhaustion forces noninvertibility of effective evolution.
  • Showed that measurement collapse, thermalization, and black-hole information loss share similar transitions.
  • Found that spatial variations of coherence capacity yield gravitational responses akin to Einsteinian gravity.

Abstract

We identify a single structural resource underlying effective physical descriptions: a finite coherence capacity, defined as the stability margin that allows a projection-based description to remain predictive under disturbance. Working under minimal axioms—invertible underlying dynamics, noninjective projection, and finite admissibility—we prove that exhaustion of coherence capacity necessarily induces noninvertibility of the effective evolution, forcing irreversibility despite reversibility of the underlying dynamics. Measurement collapse, thermalization, and black-hole information loss are shown to be instances of the same admissibility transition. We further show that spatial variation of coherence capacity requires a local geometric bookkeeping, yielding a gravitational response identical in form to Einstein gravity, with Newton’s constant emerging as a conversion factor between capacity and curvature units. The framework introduces no new dynamics or degrees of freedom and is independent of any specific microscopic model; Modal Triplet Theory is cited only as a concrete realization of the axioms. The results establish inevitability rather than existence: they classify what must follow if projection-based effective physics with finite stability margins exists.

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Cite This Study

Peter Nero (2026) studied this question.

synapsesocial.com/papers/69730f59c8125b09b0d1f1c6https://doi.org/10.5281/zenodo.18322036
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