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February 13, 20260 citationsOpen Access

Higgs Boson Phenomenology at the 100 TeV Frontier: The CCEGA Curvature Brake Signature

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MSMarc López Sánchez

Key Points

  • This work aims to develop a new theoretical model that reinterprets spacetime and addresses the Higgs mass hierarchy issue.
  • Introduced the Severely Adaptive Emergent Curvature Cosmology (CCEGA) framework.
  • Developed a non-linear modification of Einstein's field equations.
  • Provided a quantitative derivation of the dynamic equilibrium point for effective curvature potential.
  • Predicted 3–12% suppression of Higgs production at the 100 TeV frontier.
  • Offered a first-principles solution to the cosmological constant problem.
  • Explained stabilization of the Higgs mass hierarchy through radiative corrections suppression.

Abstract

This work introduces the theoretical framework of Severely Adaptive Emergent Curvature Cosmology (CCEGA). We propose a fundamental shift from General Relativity by treating spacetime as an emergent medium with intrinsic, adaptive rigidity. The central mechanism, the "Curvature Brake" (B), is formalized through a non-linear modification of the field equations (Ro - 2Rgo = 8 GTo), providing a geometric ultraviolet regulator for quantum field theory. We present a quantitative derivation of the attractor as a dynamic equilibrium point of the effective curvature potential, offering a first-principles solution to the cosmological constant problem. Furthermore, the model explains the stabilization of the Higgs mass hierarchy via exponential suppression of radiative corrections. For the Future Circular Collider (FCC-hh), CCEGA predicts a specific phenomenological signature: a 3–12% suppression of Higgs production and VBS cross-sections at the 100 TeV scale. 10. 5281/zenodo. 18466074

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Marc López Sánchez (2026) studied this question.

synapsesocial.com/papers/698ebf4385a1ff6a930168f8https://doi.org/10.5281/zenodo.18466073
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