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January 25, 20260 citationsOpen Access

The Cosmic Microwave Background as a Standing-Wave Coherence Pattern in the MID/QC Framework

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CRChadwick D Rasque

Key Points

  • The aim is to reframe the Cosmic Microwave Background as a coherence pattern maintained by the MID/QC substrate.
  • Reinterpretation of the CMB through the lens of standing-wave modes.
  • Analysis of boundary-driven configurations in cosmology.
  • Integration with MID/QC framework for coherence-driven phenomena.
  • The observed uniformity and large-scale coherence of the CMB match predictions from standing-wave patterns.
  • The framework removes the need for traditional cosmological concepts like inflation and horizon problems.
  • Anisotropies and stability of the background field are explained through coherence architecture.

Abstract

This paper reinterprets the Cosmic Microwave Background (CMB) as a boundary‑driven standing‑wave coherence pattern in the MID/QC substrate. Instead of arising from relic radiation in an expanding early universe, the CMB emerges as a stable, phase‑locked tension field configuration maintained by the finite‑boundary geometry of the substrate. The analysis shows that the observed uniformity, acoustic peaks, and large‑scale coherence of the CMB follow naturally from standing‑wave modes in a tension‑defined cavity. This framework eliminates the need for inflation, horizon‑problem resolutions, or fine‑tuned initial conditions. By treating the CMB as a coherence architecture rather than a thermal relic, the MID/QC model provides a unified explanation for anisotropies, ridge structures, and the stability of the background field. This interpretation integrates seamlessly with the broader MID/QC cosmology, including coherence‑driven structure formation and boundary‑defined cosmic dynamics.

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Cite This Study

Chadwick D Rasque (2026) studied this question.

synapsesocial.com/papers/6975b38dfeba4585c2d6f035https://doi.org/10.5281/zenodo.18348698
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