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April 3, 20260 citationsOpen Access

The Multi-Directional K-Axis Hypothesis (MDKH): A Geometric Framework for Primordial Kinematics and Field Confinement

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RTRihab Tayar

Key Points

  • The study aims to propose a geometric framework that explains primordial kinematics and field confinement during the Big Bang.
  • Developed a novel geometric model called the Multi-Directional K-Axis Hypothesis (MDKH)
  • Analyzed energy channels organized into K-axes
  • Illustrated K-axis dynamics and cosmic structural changes using visual models
  • Formulated testable predictions regarding filament alignment and galaxy clusters
  • Proposed that cosmic expansion results from the intersection of energy channels
  • Described 'Kinetic Traps' as triggers for field collapse and matter formation
  • Demonstrated a structured approach to understanding the Cosmic Web and galaxy distribution

Abstract

This research paper introduces the Multi-Directional K-Axis Hypothesis (MDKH), a novel geometric model that reinterprets the Big Bang as a Geometrical Confinement Event. Unlike stochastic singularity models, MDKH proposes that the primordial state was a high-energy, globally balanced system (Eₓ₎ₓ₀₋ ₀) organized into directional energy channels (K-axes). Cosmic expansion arises through the intersection of these axes, forming ‘Kinetic Traps’ that trigger field collapse and matter formation. Key features include: • A detailed physical interpretation of K-axis dynamics • A mathematical framework for field stability and confinement conditions • Visual models (Figures 1, 2, and 3) illustrating the transition from primordial parallelism to the Cosmic Web • Testable predictions on filament alignment and galaxy cluster distribution Keywords: Cosmology, Big Bang, K-Axis, Geometrical Confinement, Cosmic Web, Primordial Kinematics.

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Cite This Study

Rihab Tayar (2026) studied this question.

synapsesocial.com/papers/69cf5ecb5a333a821460d68ahttps://doi.org/10.5281/zenodo.19352482
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