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December 2, 20250 citationsOpen Access

Paper 10 — Quantum Coherence Seeds in Planetary-Scale Resonance Patterns-.pdf

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RJRadhakrishnan Jayaraman

Key Points

  • Phase-locked quantum fluctuations lead to a new understanding of resonance patterns in planetary environments.
  • The model establishes a physical basis for resonant structures using coherent oscillators and harmonic cascades.
  • The framework demonstrates how macro-scale resonance emerges from micro-scale coherence through nonlinear interactions.
  • Findings highlight significant implications for understanding atmospheric and geophysical phenomena at large scales.

Abstract

This paper introduces the concept of Quantum Coherence Seeds (QCS) as the foundational initiators of macro-scale resonance patterns observed in planetary environments. Through the Qindra Core Framework, a unified mechanism is proposed in which micro-level coherent oscillators—arising at the quantum boundary—amplify through harmonic cascades to produce planetary-scale geometric and energetic structures. We show that natural harmonic ratios (1:2, 2:3, √2, √3, φ) emerge spontaneously when coherence seeds cross a threshold where quantum fluctuations begin imposing long-range order on classical fields. These seeds become phase-locked with atmospheric, geophysical, and orbital field lines, producing measurable resonance signatures across multiple scales. The model demonstrates how micro-scale coherence → mesoscale pattern → planetary resonance can occur through a stable chain of nonlinear couplings. This provides a new physical basis for understanding large-scale structures such as atmospheric bands, geophysical standing waves, planetary vibrational modes, and field-driven geometric formations. The paper establishes a bridge between quantum coherence physics and planetary-scale resonance phenomena, presenting a testable and predictive framework that expands current scientific boundaries.

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Cite This Study

Radhakrishnan Jayaraman (2025) studied this question.

synapsesocial.com/papers/694027632d562116f28ffdabhttps://doi.org/10.5281/zenodo.17790118
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