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February 2, 2026Open Access

The Double-Slit Experiment in the Aether Physics Model (APM): Transfer Operators, Gate Coherence, and QMU Predictions

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Authors

DTDavid Thomson

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Overview

Analyzes the double-slit experiment's interference patterns in the Aether Physics Model, suggesting new coherence insights.

Key Points

  • This research aims to provide a QMU-native, apparatus-centric explanation of the double-slit experiment in the Aether Physics Model.
  • Decomposed the experiment into transport, boundary, and detection layers.
  • Introduced quantitative models for transfer operators and coherence windows.
  • Examined the effects of timing-jitter in which-path marking devices.
  • Identified interference patterns forming in space before detection events.
  • Derived a falsifiable condition for interference based on coherence length.
  • Predicted distinct visibility regimes depending on transport and detector coherence lengths.

Cite This Study

David Thomson (2026) studied this question.

synapsesocial.com/papers/6980fff5c1c9540dea812d64https://doi.org/10.5281/zenodo.18446424
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