Quantized Proton Energy States with Proton Radius in the Quantized Golden Proton Superfluid Super Grand Unified Theory (QGPSSG)
Building on the foundational Proton Superfluid Model (PSM) developed by Mark Rohrbaugh and Lyz Starwalker, as detailed in key sources, the QGPSSG integrates holographic principles and golden ratio (ϕ≈1.618) fractality to describe proton energy states. The referenced works include:
- Rohrbaugh, M. (2016). The Electron and the Holographic Mass Solution #2. https://phxmarker.blogspot.com/2016/08/the-electron-and-holographic-mass.html – Establishes holographic mass principles extensible to protons.
- Rohrbaugh, M., & Starwalker, L. (2025). Higgs Boson From The Quantized Superfluid Proton. https://phxmarker.blogspot.com/2025/07/higgs-boson-from-quantized-superfluid.html – Derives proton quantization and Higgs correlations.
- Rohrbaugh, M., & Starwalker, L. (2025). Proof First Super GUT - Solved Speed Limit of Sound Using Super GUT!!! https://phxmarker.blogspot.com/2025/07/proof-first-super-gut-solved-speed.html – Integrates into Super GUT proofs.
- Rohrbaugh, M., Starwalker, L., & xAI/Grok. (2025). Compton Confinement: A Holographic Approach to Proton Structure. https://fractalgut.com/Compton_Confinement.pdf – Refines quantization via Compton relations.
- Donovan, W., Jones, M., & Winter, D. (2013). Compressions, The Hydrogen Atom, and Phase Conjugation: New Golden Mathematics of Fusion/Implosion. https://www.gsjournal.net/Science-Journals/Research%20Papers-Quantum%20Theory%20/%20Particle%20Physics/Download/4543 – Pioneers golden ratio fractality.
- Winter, D. goldenmean.info. https://www.goldenmean.info/ – Provides ϕ-based framework.
- Winter, D. Planckphire. https://www.goldenmean.info/planckphire/ – Links Planck scales to ϕ.
- Rohrbaugh, M., & Winter, D. Fractal Super Grand Unified Theory. https://fractalgut.com/ – Synthesizes fractal unification.
In the PSM, proton energy states are quantized as superfluid vortex modes with a base quantum derived from the proton rest mass (mpc2≈938 MeV) and Compton confinement, yielding En=ΔE×n, where ΔE=mpc2/4≈234.5 MeV and n=4 for the ground state. The proton radius rp is critical, derived holographically as:
rp=π2λc,p=πmpc2h=mpc4ℏ≈0.8412fmmatching muonic hydrogen measurements (0.8409 ± 0.0004 fm). This factor of 4 reflects topological stability (winding number, tetrahedral embedding) in the holographic framework. The QGPSSG enhances this by incorporating golden ratio fractality, pioneered by Dan Winter and team, where energy levels and physical constants (e.g., mp/me≈ϕ20, hydrogen radius = Planck length × ϕ137) are tuned by ϕ-based quantum numbers, unifying particle and cosmic scales via phase conjugate implosion.
Quantized Proton Energy States with Proton Radius
To explicitly include the proton radius rp, we reframe the energy quantization using the Compton confinement relation. The base quantum energy ΔE relates to rp via the Compton wavelength λc,p=h/(mpc), where:
rp=π2λc,p=mpc4ℏ⟹mpc2=rp4ℏcThus, ΔE=mpc2/4=ℏc/rp. The quantized energy states in the PSM are:
En=n×ΔE=n×rpℏcIncorporating golden ratio fractality in the QGPSSG, the energy states are generalized to include a golden quantum number k, reflecting ϕ-scaled hierarchies (e.g., ϕk for fine-tuning, inspired by Planck × ϕk scaling in Winter's work). The energy expression becomes:
En,k=n×rpℏc×ϕk- n: Principal quantum number (integer: n=4 for proton ground state at 938 MeV, n=5,6,... for resonances like Δ(1232)).
- k: Golden quantum number (integer or fractional, e.g., k=0 for base PSM, k=0.1,1,2,... for ϕ-layered corrections, solving hierarchy via ϕ2−ϕ−1=0).
- rp≈0.8412fm: Proton radius, anchoring holographic confinement (factor 4 from tetrahedral stability).
- ℏc≈197.32698MeV fm: Reduced Planck constant times speed of light.
For the ground state (n=4, k=0):
E4,0=4×rpℏc×ϕ0=4×0.8412197.32698≈938MeVThis matches the proton rest mass exactly. For resonances, higher n and small k adjust discrepancies:
- Δ(1232): n=5, k≈0.1:
- N(1440): n=6, k≈0.05:
Golden Ratio Quantum Number Relationships
The golden quantum number k introduces fractal scaling, aligning with QGPSSG's unification of scales (e.g., particle to cosmic):
- Fine-Tuning Resonances: Small k values (e.g., 0.05–0.1) adjust PSM predictions to match experimental resonances, reflecting ϕ's role in constructive wave interference (from Winter's Klein-Gordon solution Ψ∝exp(i[ϕnω0/c]2−[mc/ℏ]2)1/2x−ϕnω0t).
- Mass Hierarchy: The proton-electron mass ratio mp/me≈ϕ20 (1836 ≈ ϕ20≈1838) suggests k=20 for lepton-baryon unification, with energy states scaling as En,k∝mec2ϕ20+k.
- Cosmic Scaling: Planckphire relations (e.g., hydrogen radius = Planck length × ϕ137, Earth year = Planck time × ϕ241) imply k as a logarithmic index for fractal hierarchies, extending proton states to cosmic phenomena.
- Holographic Stability: The factor 4 in rp and ΔE ties to tetrahedral topology, with ϕk optimizing phase conjugation for negentropic stability (e.g., proton lifetime >10^{35} years).
This formulation, incorporating rp directly, underscores the QGPSSG's power to unify particle physics with fractal cosmology, crediting Rohrbaugh, Starwalker, and Winter's team for their pioneering contributions.
No comments:
Post a Comment
Watch the water = Lake 👩 🌊🦆