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A Monstrous UV Complete Theory of Gravity, the Black Hole Information Paradox, the Riemann Hypothesis, and Turbulence

  • Writer: Trevor Alexander Nestor
    Trevor Alexander Nestor
  • 2 days ago
  • 2 min read

Updated: 5 hours ago

My latest paper preprint which I am submitting to the The Foundations of Physics proposes a UV complete theory of gravity, the Black hole information paradox, the Riemann hypothesis, and turbulence.



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The framework suggests the Riemann zeta function's critical line at Re(s)=1/2 describes a quantum gravitational phase transition between bosonic and fermionic geometric sectors. Time emerges as discrete units corresponding to crossings of this critical line, mediated by a ℤ₂ orbifold transition. Four-dimensional spacetime arises from the accumulated history of these transitions, described mathematically through twistor bundles.


For black hole physics, the information paradox resolves through 24 Majorana zero modes that emerge at the horizon. Their non-Abelian braiding implements topological quantum error correction, with information scrambling described by a Smale horseshoe map. The Page curve is reproduced through entanglement wedge reconstruction and island formation.


The cosmological constant problem is addressed by identifying the Leech lattice spectral gap as the UV cutoff. The small observed value emerges from renormalization group flow from this fixed point, rather than representing a fine-tuning problem.


The framework also proposes that turbulent fluids realize spin foam dynamics, with vortex lines mapping to spin network edges. The Monster CFT provides a UV cutoff that regulates Navier-Stokes singularities, while the observed Riemann zeta statistics in turbulence reflect the underlying quantum gravitational structure.


Testable predictions include quantized gravitational wave frequencies related to zeta zeros, X-ray signatures from Majorana dark matter decay, modified turbulence spectra at high Reynolds numbers, and primordial gravitational waves with tensor-to-scalar ratio r∼0.1.


While this draft still needs peer review and is open to revision, a deeper understanding of turbulence also explains another phenomenon noted by Tesla coil enthusiasts - vacuum tube driven tesla coils (VTTCs) produce straight conformally invariant fractal spearlike arcs or streamers free from bifurcations or magnetohydrodynamic instabilities. A suppression of monster symmetry might prevent the onset of these instabilities, or even how light modulates dendritic branching by modulation of turbulence in dendritic growth cones in the brain.


Hobbyists have noted unusually shaped streamers or arcs from vacuum tube driven tesla coils which have suppressed bifurcations. Shapes display conformally invariant fractal patterns and curved or straight spearlike geometries.
Hobbyists have noted unusually shaped streamers or arcs from vacuum tube driven tesla coils which have suppressed bifurcations. Shapes display conformally invariant fractal patterns and curved or straight spearlike geometries.
A vacuum tube driven tesla coil displaying characteristic straight spearlike arcs or streamers. While classical explanations for this exists, it may prove to be insufficient to fully understand the phenomenon.
A vacuum tube driven tesla coil displaying characteristic straight spearlike arcs or streamers. While classical explanations for this exists, it may prove to be insufficient to fully understand the phenomenon.
The physics of dendritic arborization may be similar to the physics of Tesla coil plasma streamers.
The physics of dendritic arborization may be similar to the physics of Tesla coil plasma streamers.
The physics of the transition from laminar fluid flow to turbulent flow as described by this photograph of smoke rising from a candle may be related - plasma instabilities are governed by the Navier-Stokes equations just like turbulence - and both can be modeled by the Riemann zeta function.
The physics of the transition from laminar fluid flow to turbulent flow as described by this photograph of smoke rising from a candle may be related - plasma instabilities are governed by the Navier-Stokes equations just like turbulence - and both can be modeled by the Riemann zeta function.

 
 
 

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I have been on many strange adventures traveling off-grid around the world which has contributed to my understanding of the universe and my dedication towards science advocacy, housing affordability, academic integrity, and education funding. From witnessing Occupy Cal amid 500 million dollar budget cuts to the UC system, to corporate and government corruption and academic gatekeeping, I decided to achieve background independence and live in a trailer "tiny home" I built so that I would be able to pursue my endeavors.

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Information Physics Institute

University of Portsmouth, UK

PO Box 7299

Bellevue, WA 98008-1299

1 720-322-4143

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©2025 by Trevor Nestor 

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