Electromagnetic Lorenz Fields
Abstract
Gauge transformations are potential transformations that leave only specific Maxwell fields invariant. To reveal more, I develop Lorenz field equations with full Maxwell form for nongauge, sans gauge function, transformations yielding mixed, superposed retarded and outgoing, potentials. The form invariant Lorenz condition is then a charge conservation equivalent. This allows me to define three transformation classes that screen for Lorenz relevance. The nongauge Lorentz conditions add polarization fields which support emergent, light-like rays that convey energy on charge conserving phase points. These localized rays escape discovery in modern Maxwell fields where the polarizations are suppressed by gauge transformations.
Cite
@article{arxiv.0810.1172,
title = {Electromagnetic Lorenz Fields},
author = {H. C. Potter},
journal= {arXiv preprint arXiv:0810.1172},
year = {2008}
}
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