Projection-Covariant Dynamics in Coherence Geometry: Presymplectic Reduction, Mapping-Space Evolution, and Observable Descent

This paper develops a projection-covariant framework for separating complete Source dynamics from the dynamics of selected observables in Coherence Geometry. A complete Source is represented by a map into coherence-state space, while physical or informational observables arise through selected projections or differential readouts. The paper develops the presymplectic geometry induced by such readouts, identifies the corresponding observable-active quotient, and shows how complete Source transport constrains the projected dynamics without requiring the selected realization to represent the entire Source. The work also develops the metric counterpart of this reduction. Projection-induced horizontal metrics, connections, and stiffness operators are constructed so that spatial refinement descends consistently to the observable level. The resulting architecture provides a general mathematical layer for generator descent, hidden Source directions, observable closure, and projection-covariant evolution across fluid, reactive, electromagnetic, informational, thermodynamic, and other coherence-geometric systems. Coherence Geometry Institute reference: CGI-RSR-000040. This work is released as an archival research preprint and has not undergone external peer review.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-29
DOI
https://doi.org/10.5281/zenodo.23040342
Primary Topic
Control and Stability of Dynamical Systems
Type
preprint
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preprint

Projection-Covariant Dynamics in Coherence Geometry: Presymplectic Reduction, Mapping-Space Evolution, and Observable Descent

B. Petersen
Zenodo (CERN European Organization for Nuclear Research)
Control and Stability of Dynamical Systems
preprint

Projection-Covariant Dynamics in Coherence Geometry: Presymplectic Reduction, Mapping-Space Evolution, and Observable Descent

B. Petersen
preprint en

Abstract

This paper develops a projection-covariant framework for separating complete Source dynamics from the dynamics of selected observables in Coherence Geometry. A complete Source is represented by a map into coherence-state space, while physical or informational observables arise through selected projections or differential readouts. The paper develops the presymplectic geometry induced by such readouts, identifies the corresponding observable-active quotient, and shows how complete Source transport constrains the projected dynamics without requiring the selected realization to represent the entire Source. The work also develops the metric counterpart of this reduction. Projection-induced horizontal metrics, connections, and stiffness operators are constructed so that spatial refinement descends consistently to the observable level. The resulting architecture provides a general mathematical layer for generator descent, hidden Source directions, observable closure, and projection-covariant evolution across fluid, reactive, electromagnetic, informational, thermodynamic, and other coherence-geometric systems. Coherence Geometry Institute reference: CGI-RSR-000040. This work is released as an archival research preprint and has not undergone external peer review.

Zenodo (CERN European Organization for Nuclear Research)
Control and Stability of Dynamical Systems
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Projection-Covariant Dynamics in Coherence Geometry: Presymplectic Reduction, Mapping-Space Evolution, and Observable Descent — B. Petersen · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS