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January 17, 20260 citationsOpen Access

The Geometric Dilution of Gravity: A Topological Resolution to the Hierarchy Problem via (2,2) Split-Signature Volumetrics

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ESEfe SARICI

Key Points

  • To investigate the geometric nature of gravity's weakness compared to electromagnetism and resolve the hierarchy problem.
  • Modeling the vacuum as a (2, 2) split-signature manifold
  • Analyzing the global tension of gravity on the causal horizon volume
  • Comparing this with the local phase space volume of topological defects
  • Gravity acts as global tension on causal horizon volume
  • Electromagnetism is confined to local phase space volume
  • The hierarchy ratio naturally appears as Γ = VH/Vp ∼ 10^40

Abstract

The extreme weakness of gravity relative to electromagnetism (approx. 10−40) constitutes theHierarchy Problem of the Standard Model. We propose that this disparity is not intrinsic butgeometric. By modeling the vacuum as a (2, 2) split-signature manifold, we demonstrate that gravityacts as a global tension on the entire causal horizon volume (VH), while electromagnetism is confinedto the local phase space volume of topological defects (Vp). The hierarchy ratio emerges naturallyfrom the ratio of these characteristic volumes, Γ = VH/Vp ∼ 1040, without requiring fine-tuning orsupersymmetry.

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Cite This Study

Efe SARICI (2026) studied this question.

synapsesocial.com/papers/696b25cfd2a12237a93491d6https://doi.org/10.5281/zenodo.18254737
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