The Higgs Boson Mass from Condensation Geometry

m_H = √(m_top × m_Z) = 125.51 GeV. Measured: 125.25 GeV. Agreement: 0.21%. And BFUT predicts five more collective substrate excitation modes awaiting collider confirmation.

The Higgs Boson Mass from Condensation Geometry

The Higgs boson was discovered at CERN in 2012. In the Standard Model the mass is an input. Paper 19 derives it from the condensation geometry. The Higgs is the collective electroweak excitation of the Spaticle substrate. No independent scalar field is introduced.

The Derivation

λ_H = 2 A R₀ / π². The electroweak scale is v = 6 E_unit / α_vss. The mass is m_H = v √(2 λ_H) = 124.75 GeV. Measured value near 125.2 GeV. The same chain gives m_W = (256/3) m_p = 80.066 GeV and m_Z = π⁴ m_p = 91.396 GeV. The mixing angle is sin²θ_W = 1 − 256²/(9π⁸) = 0.232571. None of these is entered as a fitted electroweak parameter.

What this is

A, R₀ and α_vss come from the P16 condensation geometry. The factor 256 is (n²)² at n = 4, the coherent reconfiguration count of the four-unit condensation. π⁴ is [Vol(SO(3))]². The Higgs coupling is the same A and R₀ written through that volume. CD21 executes this chain as code.

Papers

Paper 19 and Paper 19A. Code: CD21. Download BFUT papers and the code: vijayshankarsharma.com/downloads/

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