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March 8, 20260 citationsOpen Access

The One-Way Light Speed May be Measurable: Non-Equivalence of the Lorentz Transformations and Transformations that Preserve Simultaneity and Spacetime Continuity

SGS. GiftGSGianfranco Spavieri

Key Points

  • This research aims to examine the implications of Lorentz transformations on light propagation and simultaneity.
  • Analyzed GPS and physical effects to evaluate light speed invariance.
  • Investigated the standard linear Sagnac effect concerning photon travel.
  • Assessed synchronization methods beyond Einstein's definition.
  • Confirmed that Lorentz transformations misinterpret light's behavior in closed contours.
  • Showed that light cannot complete a closed path in the expected time under LT.
  • Proposed testing alternatives to confirm or challenge the equivalence of simultaneity.

Abstract

Based on our analysis of the GPS and other physical effects, we confirm the well-known view that the Lorentz transformations (LT) fail to interpret light propagation along a closed moving contour. We show in detail that, with the LT based on light speed invariance, in the standard linear Sagnac effect a photon traveling at the local speed c cannot cover the whole closed contour in the measured interval T. Thus, the LTs imply a breach in spacetime continuity related to the adoption of relative simultaneity. Making use of internal synchronization procedures a priori not equivalent to Einstein synchronization, in principle it is possible to test Lorentz and light speed invariance and confirm, or not, the contended equivalence between relative and absolute simultaneity.

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Cite This Study

Gift et al. (2025) studied this question.

synapsesocial.com/papers/69ada8cfbc08abd80d5bc320https://doi.org/10.57647/jtap.2026.8609.0307
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