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March 28, 20260 citationsOpen Access

Simple Gravity X: A Scalar Refractive Framework for Gravitational Phenomena

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EREdnilson Rodrigues

Key Points

  • The research aims to develop a scalar framework for understanding gravitational phenomena, focusing on light interactions due to gravity.
  • Developed a scalar theory of gravitation based on exponential responses to gravitational potential
  • Formulated effective refractive index to describe gravitational effects on light
  • Presented a variational formulation and nonlinear field equations
  • Derived orbital equations to predict perihelion precession
  • Successfully derived gravitational redshift and light deflection, consistent with standard weak-field predictions
  • Demonstrated Shapiro time delay in the context of the new framework
  • Received variations of the scalar field equation, aligning with previously established phenomenological forms

Abstract

This work presents a comprehensive formulation of the Simple Gravity framework, a scalar theory of gravitation based on an exponential response of local temporal and spatial intervals to a gravitational potential Φ. The framework introduces an effective refractive index n (Φ) = e^-2Φ/c², allowing gravitational effects on light to be described through an optical approach while preserving the local invariance of the speed of light. From this unified structure, the theory consistently derives gravitational redshift, light deflection, and Shapiro time delay, all in agreement with standard weak-field predictions. The dynamics of massive particles is also formulated through an effective action, leading to orbital equations that reproduce perihelion precession in the same regime. A variational formulation of the scalar field is introduced, providing a nonlinear field equation whose weak-field limit recovers the previously used phenomenological form. In addition, an effective covariant structure is developed, enabling comparison with relativistic frameworks while maintaining a non-geometric interpretation of gravity. The theory offers a unified description of gravitational phenomena based on a scalar field and an effective medium, while clearly identifying its current limitations and directions for further development. This work consolidates and extends previous developments in the Simple Gravity series.

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Cite This Study

Ednilson Rodrigues (2026) studied this question.

synapsesocial.com/papers/69c772818bbfbc51511e3072https://doi.org/10.5281/zenodo.19228705
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Simple Gravity: A Scalar Refractive Framework for Gravitational Phenomena2026
  2. 2Simple Gravity: A Scalar Field Formulation of Light Propagation in the Weak-Field Regime2026
  3. 3Simple Gravity: A Nonlinear Scalar Field Theory of Gravitation2026
  4. 4Simple Gravity: A Nonlinear Scalar Field Approach to Gravitation2026
  5. 5Simple Gravity II: Strong-Field Structure from a Nonlinear Scalar Field2026