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Published August 26, 2025 | Version v2

Optical-Gravity Field

  • 1. Independent researcher

Description

The Optical-Gravity Field (OGF) is a scalar-field framework that reproduces classical GR tests (light deflection, Shapiro delay, perihelion precession, GPS corrections) while adopting a different interpretation: gravity modulates local optical properties and local process rhythms; proper time and a spacetime metric are not required at the operational level. The Lorentz-type slowdown in moving systems is attributed to field intensification due to motion. The work also outlines strong-field predictions (optical hyper-slowing without geometric horizons) and two feasible discriminators (rotor/cavity at the same altitude; one-way vertical optical TOF).

Series information (En)

Description:
This is the updated version of Optical-Gravity Field: Foundations, Principles and Classical Tests.
Compared to the version deposited on 20 August 2025, it includes a complete set of appendices (A–F), with detailed treatments of:

  • the train thought experiment (Appendix A),

  • the variational principle (Appendix B),

  • the dynamics of massive particles (Appendix C),

  • waves and interferometric response (Appendix D),

  • light deflection near the Sun (Appendix E),

  • and a conclusive prediction on strong-field regimes (Appendix F).

The main text remains unchanged; this release consolidates the work with the extended appendices.

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Optical-Gravity Field.pdf

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Additional details

Dates

Available
2025-08-20
online