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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

  • Quantum coherence physics drives the emergence of long-range order in various planetary systems, including geophysical waves and atmospheric structures.
  • Key mechanisms include phase-locked oscillators, suggesting a robust link between quantum phenomena and large-scale environmental patterns.
  • Observational analysis across various planetary environments confirms significant resonance signatures linked to quantum coherence seeds.
  • This model highlights the importance of coherence in understanding complex planetary systems, promising further insights into geophysical formations.

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/694027632d562116f28ffdc4https://doi.org/10.5281/zenodo.17790119
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