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January 23, 20260 citationsOpen Access

Dynamic Formation of Superclusters within the Global Inhomogeneity Domains (GID) Framework

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JEJavier Mariscal Estrada

Key Points

  • The study aims to elucidate the causal and dynamical mechanisms for supercluster formation in the universe using the Global Inhomogeneity Domains framework.
  • Identified three horizon-scale coherent domains associated with major clusters.
  • Analyzed gravitational behaviors and potential gradients within the framework.
  • Examined the effects of mass-energy redistribution on galaxy flows.
  • Established coherent peculiar velocities reaching ~600 km/s due to gravitational gradients.
  • Demonstrated that superclusters form in regions where tidal gradients slow down matter flows.
  • Unified multiple cosmic phenomena without resorting to standard inflationary models.

Abstract

We present a causal and dynamical mechanism for the formation of observed superclusters within the Global Inhomogeneity Domains (GID) framework. Three horizon-scale coherent domains are identified: Φ₁ (upper-left, ~2.5 Gpc) associated with Laniakea, Φ₂ (upper-right, ~2.5 Gpc) associated with Shapley, and a central collapsed domain Φ₀ (~1.8 Gpc) associated with the Great Attractor. A key clarification is that the apparent “repulsive” behavior originating from Φ₀ does not imply new physics, but corresponds to an effective negative gravitational potential gradient, ∇Φ₀(collapsed) < 0, produced by violent collapse and mass–energy redistribution (collapse fraction f ≈ 60–75%). Coherent peculiar velocities with amplitudes up to ~600 km s⁻¹ arise naturally from the time-integrated effect of these gradients within standard General Relativity. Matter accumulates in nodal regions where tidal gradients from Φ₁ and Φ₂ decelerate the flows, forming the observed superclusters. This framework unifies CMB anomalies, bulk flows, directional H₀ tension, and large-scale structure formation without invoking inflationary fine-tuning or modifications of gravity.

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Cite This Study

Javier Mariscal Estrada (2026) studied this question.

synapsesocial.com/papers/69730ed4c8125b09b0d1e974https://doi.org/10.5281/zenodo.18329232
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