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March 14, 20260 citationsOpen Access

Maxwell from the Unified 4D Model

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TNTrevor Norris

Key Points

  • To derive brane-effective electromagnetism from a localized 4+1 dimensional Maxwell model.
  • Derived equations from a 4+1 dimensional gauge field model
  • Established localized Maxwell equations
  • Investigated Gaussian profile effects on effective coupling
  • Validated localized Maxwell equations and Bianchi identities
  • Showed effective coupling modifies standard Maxwell theory
  • Demonstrated brane-localized effects lead to Yukawa corrections

Abstract

We derive brane-effective electromagnetism from a localized 4+1 Maxwell sector embedded in the unified toy model. The gauge field is a bulk potential AM with kinetic term −Z(w)FMNFMN/(4μ0), where the transverse profile Z(w) localizes gauge dynamics near the brane at w = 0. Varying the action yields the localized Maxwell equations ∂M(ZFMN) + ξ−1∂N(∂·A) = μ0JN, the Bianchi identities, and an exact divergence consistency identity linking the gauge condition to current conservation. For brane-localized conserved sources, axial gauge, and a brane-dominant zero mode, integrating over w reduces the theory to standard 3+1 Maxwell with an effective coupling μ0eff = μ0/Zint, where Zint = ∫−∞∞ Z(w) dw. For a Gaussian profile Z(w) = e−w²/λ², μ0eff = μ0/(λ√π) and the transverse Sturm–Liouville problem yields a discrete KK tower with masses mn2 = 2n/λ² and a brane parity selection rule. The resulting static brane potential is Coulomb plus Yukawa-suppressed corrections with a fixed coefficient pattern; the leading deviation scales as ½e−2r/λ. For time-dependent sources, the brane-to-brane response depends only on the Lorentz scalar k2 (with the retarded prescription), ensuring brane Lorentz covariance; massive modes add causal tail terms inside the light cone. Finally, a minimally coupled brane matter model yields a conserved Noether current and an off-shell identity that supplies the Maxwell source consistency condition. All principal identities and reductions are backed by a compact Wolfram Language referee suite.

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Cite This Study

Trevor Norris (2026) studied this question.

synapsesocial.com/papers/69b4b9eb18185d8a3980239bhttps://doi.org/10.5281/zenodo.18977886
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