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February 5, 20260 citationsOpen Access

MID/QC Applied Substrate Series 2 - Coherence Preserving Channel Geometry for Sub Nanometer Routing

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CRChadwick D Rasque

Key Points

  • The aim is to develop channel geometries that maintain coherence in sub-nanometer routing, enhancing stability and performance.
  • Introduced new channel geometries designed to minimize torsion and coherence loss.
  • Assessed coherence preservation under different geometric configurations.
  • Analyzed the impact of these designs on resistance, crosstalk, and thermal behavior.
  • Demonstrated reduced coherence loss in proposed geometries compared to classical models.
  • Achieved stable propagation across sub-nanometer scales, indicating better performance.
  • Reframed resistance and thermal behavior as coherence-gradient phenomena, enhancing understanding of interconnect dynamics.

Abstract

Classical routing models treat sub‑nanometer interconnects as geometric pathways constrained by lithographic limits. In the MID/QC framework, routing is instead governed by coherence preservation within the quantized substrate. This paper introduces channel geometries that minimize torsion, reduce coherence loss, and maintain stable propagation across sub‑nanometer scales. The result is a substrate‑native routing architecture that reframes resistance, crosstalk, and thermal behavior as coherence‑gradient phenomena rather than material limitations. This work establishes the geometric foundation for coherence‑preserving computation in the Applied Substrate Series.

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Cite This Study

Chadwick D Rasque (2026) studied this question.

synapsesocial.com/papers/698434dff1d9ada3c1fb37b4https://doi.org/10.5281/zenodo.18462586
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