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The Maximally Mixed Universe: A Geometric Derivation of the Standard Model and Cosmology
The Maximally Mixed Universe: A Geometric Derivation of the Standard Model and Cosmology
Fuente:
Zenodo
Saved in:
Bibliographic Details
Main Author:
Harrison, Lee
Format:
Recurso digital
Published:
Zenodo
2026
Subjects:
maximally mixed universe, holographic principle, fine-structure constant, quantum gravity, thermofield double, de Sitter entropy, Bekenstein bound, holographic renormalisation group, fixed point, topological invariants, Euler characteristic, S2 screen, standard model derivation, gauge group, McKay correspondence, E6 E7 E8, SU(3) SU(2) U(1), Weyl fermions, three generations, Immirzi parameter, loop quantum gravity, black hole entropy, Planck length, Hubble constant, cosmological constant, dark energy, dark matter, fine structure constant derivation, alpha derivation, dimensionless constants, large number coincidences, Dirac large numbers, quantum information, density matrix, maximum entropy, entanglement entropy, von Neumann entropy, TFD, Hartle-Hawking state, holographic screen, radial acceleration relation, Milgrom acceleration, MOND, a0 H0 relation, Omega Lambda, ln2, Hubble tension
maximally mixed universe, holographic fixed point, fine-structure constant derivation, alpha inverse 137, Hubble constant derivation, H0 69.733, Bekenstein entropy, holographic area law, thermofield double, TFD copy number, S2 topology, Euler characteristic, Gauss-Bonnet theorem, U(1) holonomy, Dirac quantisation, holographic renormalisation group, RG fixed point, Planck length, de Sitter horizon, entanglement entropy, maximally mixed state, density matrix, quantum information, standard model gauge group, McKay correspondence, SU(3) SU(2) U(1), three spatial dimensions, D equals 3, topological uniqueness, black hole entropy, Immirzi parameter, cosmological constant, dark energy fraction, Omega Lambda ln2, large number coincidences, Eddington number, Dirac large numbers, dimensionless ratios, fine tuning, anthropic principle
maximally mixed universe, dynamic sector, Hubble constant, H0 69.733, radial acceleration relation, Milgrom acceleration, a0 cH0 2pi, MOND, SPARC, rotation curves, Hubble tension, dark energy, Omega Lambda, Friedmann equation, de Sitter expansion, holographic RG running, cosmological evolution, baryon asymmetry, CMB temperature, T CMB derivation, neutrino masses, Yukawa couplings, fermion masses, standard model parameters, holographic renormalisation group, fixed point stability, alpha variation, varying constants, atomic clock constraints, quasar absorption spectra, radial acceleration relation slope, distance calibration, TRGB, SH0ES, Planck CMB, BIG-SPARC prediction, galactic dynamics, quantum gravity phenomenology
Online Access:
Acceder al recurso
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Internet
https://doi.org/10.5281/zenodo.19039236
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