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A Self-Stabilized Field Theory of Neutrinos 被引量:3

A Self-Stabilized Field Theory of Neutrinos
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摘要 In “<i>A Self-linking Field Formalism</i>” I establish a self-dual field structure with higher order self-induced symmetries that reinforce the first-order dynamics. The structure was derived from Gauss-linking integrals in R<sup>3</sup> based on the Biot-Savart law and Ampere’s law applied to Heaviside’s equations, derived in strength-independent fashion in “<i>Primordial Principle of Self-Interaction</i>”. The derivation involves Geometric Calculus, topology, and field equations. My goal in this paper is to derive the simplest solution of a self-stabilized solitonic structure and discuss this model of a neutrino. In “<i>A Self-linking Field Formalism</i>” I establish a self-dual field structure with higher order self-induced symmetries that reinforce the first-order dynamics. The structure was derived from Gauss-linking integrals in R<sup>3</sup> based on the Biot-Savart law and Ampere’s law applied to Heaviside’s equations, derived in strength-independent fashion in “<i>Primordial Principle of Self-Interaction</i>”. The derivation involves Geometric Calculus, topology, and field equations. My goal in this paper is to derive the simplest solution of a self-stabilized solitonic structure and discuss this model of a neutrino.
作者 Edwin Eugene Klingman Edwin Eugene Klingman(Cybernetic Micro Systems, Inc., San Gregorio, USA)
出处 《Journal of High Energy Physics, Gravitation and Cosmology》 2021年第3期936-948,共13页 高能物理(英文)
关键词 Self-Stabilized Field Theory First-Order Dynamics The Biot-Savart Law The Ampere’s Law NEUTRINO Heaviside Equations Gravitational Field Solitons SELF-DUAL Gauss-Linking Self-Stabilized Field Theory First-Order Dynamics The Biot-Savart Law The Ampere’s Law Neutrino Heaviside Equations Gravitational Field Solitons Self-Dual Gauss-Linking
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