Higgs Mechanism, Fractal Geometry Modification, and Theoretical Integration Discussion
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This paper investigates the relationship between FHEST (Fractal HolographicString Theory) and the traditional Higgs mechanism for mass generation, as wellas potential pathways for their theoretical integration. The Higgs mechanism relieson spontaneous symmetry breaking and the vacuum expectation value of the Higgsfield to endow particles with mass, whereas FHEST, grounded in fractal geometryand local curvature integration, suggests that particle mass is intrinsically tied tothe geometric structure of spacetime. First, this paper compares the fundamen?tal principles of the two mechanisms from a theoretical perspective, then proposesspecific methods for introducing fractal corrections into the Higgs potential andconstructing direct fractal-field coupling terms. Finally, the challenges faced intheory and experimentation, as well as future verification methods and researchprospects, are discussed. The results suggest that the two mechanisms may com?plement each other on different scales, providing a unified theoretical framework toexplain the hierarchy of particle masses and the deep connection between mass andspacetime geometry.