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May 22, 20260 citationsOpen Access

The G₂ Fano Lattice as the Origin of the Auxetic Brane Properties: c(t) H(t), ħ(t) H(t)³, and a₀ = cH₀/2π We show that the G₂-symmetric Fano lattice, arising as the automorphism group of the single

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BJBharathi Jagadeesan

Key Points

  • The aim is to explore how the G₂-symmetric Fano lattice influences auxetic properties and fundamental physical constants.
  • Presented the G₂-symmetric Fano lattice framework.
  • Analyzed the relationship between acoustic speed, Planck constant, and Hubble expansion rate.
  • Derived the Carreau-Yasuda brane rheology for shear-thinning response.
  • Demonstrated that the brane exhibits a Poisson ratio of ν = −1, defining it as an auxetic material.
  • Established relationships for acoustic speed c(t) and Planck constant ħ(t) based on cosmological parameters, with constants showing no free parameters.
  • Predicted specific rheological behavior with zero free parameters, particularly for shear-thinning responses.

Abstract

We show that the G₂-symmetric Fano lattice, arising as the automorphism group of the single octonion O = H H, forces the brane to be an auxetic material with Poisson ratio ν = −1. This ⁺ ⊕ ⁻ auxetic property has two immediate and exact consequences for the physical constants c and H: (i) the brane acoustic speed (speed of light) is c (t) = c₀ H (t) /H₀, making c proportional to the Hubble expansion rate H; and (ii) the Planck constant satisfies ħ (t) H (t) ³, because ħ = ℓP mP c and ℓP ∝ is fixed by the Planck length being constant. Both c (t) and ħ (t) are auxetic properties of the Fano truss, not postulates. Their ratio α = e²/ (ħc) = const: the fine structure constant is conserved exactly. The MOND acceleration scale a₀ = cH₀/2π = 1. 043×10 ¹ m/s² follows from the zero-jerk ⁻ ⁰ condition on the sump geodesic and requires no free parameter. The CMB hemispherical asymmetry Aₕemi = 2√3/49 = 7. 07% is derived from the G₂ root structure. The Carreau-Yasuda brane rheology ᵥ (a) = 1+ (a/a₀) ²^ (n−1) /4 with n = 0. 34 is predicted as the brane's shear-thinning response to acceleration gradients. All three predictions carry zero free parameters. Part of the One-Octonion Brane-Bulk Framework series. Anchor DOI: 10. 5281/zenodo. 19120873. Community: one-octonion-brane-bulk. Author: Bharathi Dasan Jagadeesan, M. D. , University of Minnesota. ORCID: 0000-0002-1143-941X.

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Cite This Study

Bharathi Jagadeesan (2026) studied this question.

synapsesocial.com/papers/6a0ff43fd674f7c03778d7b7https://doi.org/10.5281/zenodo.20299705
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