The Divine Wave Model: An Operator-First Physical Framework

Fuente: Zenodo
Saved in:
Bibliographic Details
Main Author: Lampton, Brian Doyle
Format: Recurso digital
Published: Zenodo 2026
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866902246361399296
author Lampton, Brian Doyle
author_facet Lampton, Brian Doyle
contents <p>Contemporary physical theory is formulated predominantly in an equation-first manner, identifying physical law with differential equations and their solutions. This paradigm has proven extraordinarily successful in regimes where admissible states are weakly constrained, coefficients are uniform, and global solutions exist. However, it becomes structurally inadequate in regimes characterized by strong admissibility constraints, nonuniform topology, or histories that preclude global closed-form evolution.</p> <p>This work presents an operator-first physical framework in which admissibility precedes dynamics. Physical law is defined by constraints on allowable transformations acting on a coherence configuration space, and evolution is constructed as a product limit of admissible micro-transformations. Differential equations arise only as effective descriptions in regimes where admissibility constraints simplify and generators commute.</p> <p>The framework introduces a coherence-based admissible state space, topological sector structure, admissible generator families, and a monotone functional enforcing global directionality. Effective generators provide regime-dependent summaries of admissible evolution, while their resolvents encode accessibility and govern observable response. Measurement is interpreted as a probe of accessibility rather than of intrinsic state variables, yielding testable predictions including resonance structure, hysteresis, polarity inversion, and inertial modulation.</p> <p>The formulation is mathematically explicit and falsifiable. Conventional equation-based theories, including those of the Standard Model, emerge as special cases within the operator-first framework rather than as fundamental starting points. The result is a strictly more general procedural foundation for physical law.</p> <p>V2 Changes:  Abstract removed (redundant with introduction) and Title of Referenced DWM Paper (not the link) was corrected.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18508094
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle The Divine Wave Model: An Operator-First Physical Framework
Lampton, Brian Doyle
mathematical physics, operator theory, functional analysis, semigroups, resolvent, Chernoff product formula, topology, holonomy, admissibility, measurement theory
<p>Contemporary physical theory is formulated predominantly in an equation-first manner, identifying physical law with differential equations and their solutions. This paradigm has proven extraordinarily successful in regimes where admissible states are weakly constrained, coefficients are uniform, and global solutions exist. However, it becomes structurally inadequate in regimes characterized by strong admissibility constraints, nonuniform topology, or histories that preclude global closed-form evolution.</p> <p>This work presents an operator-first physical framework in which admissibility precedes dynamics. Physical law is defined by constraints on allowable transformations acting on a coherence configuration space, and evolution is constructed as a product limit of admissible micro-transformations. Differential equations arise only as effective descriptions in regimes where admissibility constraints simplify and generators commute.</p> <p>The framework introduces a coherence-based admissible state space, topological sector structure, admissible generator families, and a monotone functional enforcing global directionality. Effective generators provide regime-dependent summaries of admissible evolution, while their resolvents encode accessibility and govern observable response. Measurement is interpreted as a probe of accessibility rather than of intrinsic state variables, yielding testable predictions including resonance structure, hysteresis, polarity inversion, and inertial modulation.</p> <p>The formulation is mathematically explicit and falsifiable. Conventional equation-based theories, including those of the Standard Model, emerge as special cases within the operator-first framework rather than as fundamental starting points. The result is a strictly more general procedural foundation for physical law.</p> <p>V2 Changes:  Abstract removed (redundant with introduction) and Title of Referenced DWM Paper (not the link) was corrected.</p>
title The Divine Wave Model: An Operator-First Physical Framework
topic mathematical physics, operator theory, functional analysis, semigroups, resolvent, Chernoff product formula, topology, holonomy, admissibility, measurement theory
url https://doi.org/10.5281/zenodo.18508094