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June 28, 20260 citationsOpen Access

Emergent Gravity from Informational Redundancy Minimization: UV Completion, MOND Derivation, and Non-Perturbative Resolution to Cosmological Tensions!!!!!

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LMLic.Mendoza Romo Martinez Mendoza Romo Martinez

Key Points

  • The research aims to demonstrate that gravity emerges from the quantum vacuum's behavior in minimizing informational redundancy.
  • Applied functional renormalization group of Wetterich to the quantum vacuum
  • Derived MOND interpolation from first principles
  • Predicted Coma Cluster velocity dispersion using baryonic data and environmental screening factor.
  • Achieved stable non-gaussian fixed point at g* = 2.0, confirming asymptotic safety
  • Predicted velocity dispersion of σ = 985.35 km/s, matching observed ~1000 km/s (χ² = 0.09) without invoking dark matter
  • Predicted S8 = 0.7616, addressing the tension with Planck and KiDS+DES measurements.

Abstract

*VERSIÓN EN ESPAÑOL **DESCRIPCIÓN Mira, en este trabajo muestro: la gravedad no es una fuerza fundamental, sino que sale de cómo el vacío cuántico se pone a chambear para minimizar la redundancia de información. Le puse IRM (Minimización de Redundancia Informacional) y la neta es que funciona de maravilla. **Lo que logré: ** Apliqué el grupo de renormalización funcional de Wetterich al vacío y me topé con un Punto Fijo No Gaussiano bien estable en g* = 2. 0. Esto me da completitud UV asintóticamente segura, o sea, que los acoplamientos del Modelo Estándar ya no se van al infinito (adiós a los polos de Landau). A nivel galáctico, saqué desde primeros principios la función de interpolación de MOND μ (x) = x/ (1+x), sin inventar nada. La derivé acoplando la constante gravitacional que cambia con la relación de Unruh. Bien pasado de. . . . Para el Cúmulo de Coma usé puro dato bariónico (masa de gas observable) y con un factor de apantallamiento fₑnv ≈ 3. 809, predije la dispersión de velocidades en σ = 985. 35 km/s. El dato observado es ~1000 km/s, así que el χ ² = 0. 09. Le atiné bien sin necesidad de materia oscura. Ahuevo!!! Y la joya de la corona: resolví la tensión de S8. Planck dice S8 = 0. 834, pero los sondeos de lentes gravitacionales (KiDS+DES) miden S8 = 0. 765 ± 0. 020. Yo predije S8 = 0. 7616 con una supresión no lineal del 8. 68%. Le dí donde debía ser!!! **Lo que viene: ** En octubre de 2026 sale el Data Release 1 de Euclid (el telescopio espacial de la ESA) con datos bien precisos de S8. Si confirman S8 ≈ 0. 76, pues ya valió Madre!!!! --- ### **VERSIÓN EN INGLÉS **DESCRIPTION This work presents an approach in which gravity is not treated as a fundamental force, but rather as emerging from the behavior of the quantum vacuum in minimizing informational redundancy. The framework, referred to as IRM (Informational Redundancy Minimization), was applied and found to yield consistent results. **Key Results: ** The functional renormalization group of Wetterich was applied to the vacuum, revealing a stable Non-Gaussian Fixed Point at g* = 2. 0. This provides asymptotic safety in the ultraviolet regime, such that the couplings of the Standard Model remain finite (avoiding Landau poles). At the galactic scale, the MOND interpolation function μ (x) = x/ (1 + x) was derived from first principles without additional assumptions. This was obtained by coupling the gravitational constant to the Unruh acceleration relation. For the Coma Cluster, baryonic data only (observable gas mass) were used, together with an environmental screening factor fₑnv ≈ 3. 809, to predict a velocity dispersion of σ = 985. 35 km/s. The observed value is approximately 1000 km/s, yielding χ² = 0. 09. This result aligns with observations without invoking dark matter. Additionally, the S8 tension was addressed. While Planck reports S8 = 0. 834, weak lensing surveys (KiDS+DES) measure S8 = 0. 765 ± 0. 020. The present framework predicts S8 = 0. 7616, corresponding to a nonlinear suppression of 8. 68%. This value is consistent with the lower observational estimates. **Outlook: ** The first Data Release of the Euclid mission (ESA) is scheduled for October 2026 and is expected to provide precise constraints on S8. Should the measurements confirm S8 ≈ 0. 76, this would offer further support for the framework. !!!! --

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Cite This Study

Lic.Mendoza Romo Martinez Mendoza Romo Martinez (2026) studied this question.

synapsesocial.com/papers/6a40bb1461bb0a67205c6c21https://doi.org/10.5281/zenodo.20916648
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