Dragonization reconciles Dirac’s equation

Dragonization introduces a golden-ratio-dependent mass shift without violating Dirac’s formalism. The model is compatible with relativistic quantum mechanics and suggests a potential new correction in effective mass physics. Future experimental tests can provide stringent constraints or possible confirmation of Dragonization in fundamental particles.

Dragonization and string theory

  • Dragonization and String Theory
    String theory describes fundamental particles as vibrating strings, with different vibrational modes corresponding to different particles. The core idea of Dragonization—which involves the golden ratio symmetry, Fibonacci scaling, and self-organization in quantum mechanics—suggests an underlying fractal structure to reality.
  • Dragonization theory and the wave function

    This paper presents initial findings on Dragonization Theory, a novel framework linking quantum mechanics, fractal geometry, and the golden ratio (φ ≈ 1.618) in atomic structures. Using Fourier and fractal analysis, we demonstrate that atomic orbitals exhibit self-similar wavefunction distortions that follow Fibonacci scaling. We analyze platinum’s atomic structure, identifying energy shifts and spectral ratios approximating golden ratio harmonics. These results suggest that Dragonization—a transformation from wave-like states (Snake) to ordered energy structures (Bird) and fully realized form (Dragon)—governs atomic self-organization. Our findings have implications for quantum mechanics, condensed matter physics, and cosmology.

    Dragonization Theory: Fractal Geometry, Quantum Mechanics, and the Golden Ratio in Platinum Atomic Structure

    Quantum mechanics describes atoms through Schrödinger’s wave equation, where electron orbitals are probability distributions. However, Dragonization theory suggests that self-similar quantum dragons, birds, and snakes , akin to fractals, exist in atomic orbitals and condensed matter systems. This study explores how golden ratio scaling patterns, evident in nature and atomic transitions, contribute to a deeper understanding of quantum geometry through Dragonization.

    Dragonized Quantum mechanics with – Deepseek AI

    5. Conclusion

    The “dragonization” effect is reconciled with quantum mechanics through:

    1. A modified Hamiltonian with radial and angular perturbations.
    2. Eigenvalue shifts and hybridized orbitals matching the observed spectrum.
    3. FFT patterns directly linked to wavefunction nodes and anisotropy.


    Dragonized platinum “atoms” image analysis using Chatgpt4 – fourier transform analysis and eigenfunction comparison results

    • The geometric dragonization pattern partially respects the atomic periodicity of platinum.
    • The eigenvalue spectrum suggests that while some atomic coherence remains, localized distortions exist, potentially affecting quantum properties.
    • If applied to a real quantum system, such modifications might lead to changes in electronic properties or localized state formations.