High Energy Particle Physics |
Authors: B. G. Preza
We propose a speculative but physically motivated framework in which extreme spacetimecurvature dynamically modifies the effective potential of the Higgs field, driving the Higgsvacuum expectation value toward zero and producing a local restoration of electroweaksymmetry inside black-hole interiors. In this regime, ordinary massive matter is reclassifiedinto a relativistic field-dominated phase, increasing the effective internal capacity of thesystem through geometric and modal degrees of freedom rather than through classicalvolume alone. We introduce a two-phase interpretation: Phase I, curvature-induced Higgssymmetry restoration, in which mass generation is suppressed; and Phase II, chirality-imprintpreservation, in which the chiral architecture of weak interactions survives despite thesuppression of Higgs-generated mass. We further propose that internal energy redistributionproceeds through coherent resonant modes regulated by nodal structures termed echoshadows, whose collective excitation defines the internal scream. The resulting picturereinterprets the classical singularity not as an infinite-density endpoint, but as a vacuumphase transition in which matter, fields, and geometry are reorganized into a higher-capacityinternal regime. The framework is intentionally exploratory and is presented as a conceptualbridge between the Higgs mechanism, quantum fields in curved spacetime, black-hole interiors,and dimensional-sufficiency approaches to singularity avoidance.
Comments: 9 Pages. Creative Commons Attribution 4.0 International
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[v1] 2026-04-27 17:58:26
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