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January 25, 20260 citationsOpen Access

Measurement and Decoherence in the MID/QC Substrate (Double-slit) — Part I

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CRChadwick D Rasque

Key Points

  • This research aims to explore the MID/QC interpretation of measurement and decoherence through the double-slit experiment.
  • Developed the MID/QC framework for analysis
  • Used the double-slit experiment as a foundational case
  • Analyzed coherence structures and their interactions in a substrate tension field
  • Investigated how measurement perturbs coherence wells and leads to classical outcomes
  • Identified how coherence structures form and interfere within the framework
  • Described a new mechanism for decoherence based on gradient interference and tension-flow interactions
  • Showed measurement leads to physical perturbations impacting coherence outcomes without abstract concepts

Abstract

This paper develops the MID/QC interpretation of measurement and decoherence using the double‑slit experiment as the foundational case study. In the MID/QC framework, quantum behavior arises from coherence wells in a substrate tension field, and measurement corresponds to a physical perturbation that disrupts or merges these wells. The double‑slit geometry provides a clean setting to analyze how coherence structures form, interfere, and collapse. Decoherence emerges from gradient interference, tension‑flow interactions, and phase misalignment between local coherence minima. This substrate‑level mechanism produces classical outcomes without invoking abstract projection or symbolic wavefunction collapse. Part I introduces the core concepts: coherence wells, substrate perturbation, gradient‑driven decoherence, and the physical mechanism underlying measurement. Later parts will extend the analysis to delayed‑choice configurations, quantum eraser setups, and general measurement architectures.

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Cite This Study

Chadwick D Rasque (2026) studied this question.

synapsesocial.com/papers/6975b36bfeba4585c2d6ed80https://doi.org/10.5281/zenodo.18349411
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