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October 10, 20250 citationsOpen Access

A Generalized Contraction Framework for the Michelson-Morley Null Result in a Medium-Based Theory

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GGGui Furne Gouveia

Key Points

  • The generalized framework reproduces the Michelson-Morley null result through medium-based interpretations.
  • Longitudinal and transverse deformations facilitate a consistent analysis across inertial frames in motion.
  • This approach reinterprets dilations and contractions, linking them to historical physics postulates.
  • The framework challenges traditional interpretations, offering a new understanding of light travel and propagation.

Abstract

The Michelson--Morley experiment yielded a null result, indicating equal light travel times in the longitudinal and transverse arms of an interferometer, traditionally interpreted as evidence for the absence of a light-propagating medium. This paper analyzes the experiment in the reference frame of a hypothetical medium, modeled as a property of space or a field, without assuming its absence. We introduce longitudinal and transverse dilation/contraction deformations and derive their relationship to reproduce the null result. This generalizes the pre-Einsteinian Lorentz-FitzGerald contraction postulate and provides a framework for alternative medium-based interpretations consistent with the experimental outcome. The analysis is extended to show that the derived relationship remains valid when comparing arbitrary inertial frames in motion relative to the medium, demonstrating the internal consistency of a medium-based approach.

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Cite This Study

Gui Furne Gouveia (2025) studied this question.

synapsesocial.com/papers/68e861907ef2f04ca37e4022https://doi.org/10.20944/preprints202509.2283.v2
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