Conservation, symmetry, and nonlinear exchange in a shearing self-gravitating magnetofluid

This deposit presents “Conservation, symmetry, and nonlinear exchange in a shearing self-gravitating magnetofluid,” together with supplementary material and compact supporting evidence.The study connects conservation accounting, symmetry-dependent observability, and controlled nonlinear evolution in an eight-component magnetohydrodynamic model. A thirteen-channel momentum budget closes across 196 trajectories. Symmetry identifies scalar-null directions, while matched interventions distinguish nonlinear generation of Fourier support from its modulation by shear. A derived reversal recovers refined ideal histories, and imposed forward losses produce measurable return defects.Results apply to the tested discrete models and finite evolution windows. Spatial-convergence limits and saved-time quadrature sensitivity remain explicit. The package includes 120 compact source records, figures, provenance hashes, and preserved failed results. Full trajectory archives and complete reproduction environments are available upon request, while missing histories require regeneration.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-17
DOI
https://doi.org/10.5281/zenodo.22809002
Primary Topic
Pulsars and Gravitational Waves Research
Type
preprint
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preprint

Conservation, symmetry, and nonlinear exchange in a shearing self-gravitating magnetofluid

Jake Campbell
Zenodo (CERN European Organization for Nuclear Research)
Pulsars and Gravitational Waves Research
preprint

Conservation, symmetry, and nonlinear exchange in a shearing self-gravitating magnetofluid

Jake Campbell
preprint en

Abstract

This deposit presents “Conservation, symmetry, and nonlinear exchange in a shearing self-gravitating magnetofluid,” together with supplementary material and compact supporting evidence.The study connects conservation accounting, symmetry-dependent observability, and controlled nonlinear evolution in an eight-component magnetohydrodynamic model. A thirteen-channel momentum budget closes across 196 trajectories. Symmetry identifies scalar-null directions, while matched interventions distinguish nonlinear generation of Fourier support from its modulation by shear. A derived reversal recovers refined ideal histories, and imposed forward losses produce measurable return defects.Results apply to the tested discrete models and finite evolution windows. Spatial-convergence limits and saved-time quadrature sensitivity remain explicit. The package includes 120 compact source records, figures, provenance hashes, and preserved failed results. Full trajectory archives and complete reproduction environments are available upon request, while missing histories require regeneration.

Zenodo (CERN European Organization for Nuclear Research)
Life in Land
Pulsars and Gravitational Waves Research
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Conservation, symmetry, and nonlinear exchange in a shearing self-gravitating magnetofluid — Jake Campbell · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS