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May 10, 20260 citationsOpen Access

RVA Bio-Metric Protocol v1.0: Testing DNA Phase-Locking and Thermal Stability (391 THz / 766 nm)

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IDIvan Davidenko

Key Points

  • This research aims to establish a framework for testing the thermal stability of DNA within the RVA system using phase-locking technology.
  • Developed the Bio-Metric Protocol v1.0 for DNA analysis in the RVA framework.
  • Utilized AI-audit to verify quantitative predictions on thermal stability and structural integrity.
  • Set laser power density parameters for validation of DNA stability under specific wavelengths.
  • Increased DNA melting temperature (Tm) reported by +1.8°C to +3.2°C under 391.2444 THz phase-lock conditions.
  • Reduction in tri-radical formation probability to the order of 10⁻²⁷, indicating improved stability.
  • Theoretical impedance matching confirmed at 377 Ohm within the DNA framework.

Abstract

`This document presents the "Bio-Metric Protocol v1.0" for testing the "Quantum Shield of Life" within the Resonant Vacuum Architecture (RVA) framework. The study defines a deterministic interface between the Davidenko Absolute (λ₀ = 766.490234 nm) and the structural stability of the DNA sugar-phosphate backbone. Key quantitative predictions verified by AI-audit (9.2/10): Thermal Stability: A predicted increase in DNA melting temperature (Tm) by +1.8°C to +3.2°C under 391.2444 THz resonant phase-lock. Entropy Suppression: Reduction of spontaneous orbital chaos and tri-radical formation probability to the order of 10⁻²⁷. Impedance Matching: Theoretical verification of the 377 Ohm vacuum-metric bridge within the DNA axial filament. The protocol provides specific parameters for laser power density (0.5 – 5 W/cm²) and spectroscopic endpoints (760–775 nm) to empirically confirm the RVA-Life coupling mechanism.`

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Cite This Study

Ivan Davidenko (2026) studied this question.

synapsesocial.com/papers/6a002087c8f74e3340f9b67ahttps://doi.org/10.5281/zenodo.20089937
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