We construct a structural expression for the fine-structure constant \ (\) within the Projective Dynamic Logo (PDL) framework. Using the PDL combinatorial architecture of the proton (valence content \ (rₕ₀₋ = 930\), relational sea \ (Rₒ₄₀ = 10\, 087\) ) and a notion of active surface \ (Rₒₔₑ₅\) coupling the proton to the elementary \ ( (4, 6) \) electron block, we postulate \ (^-1 = / Rₒₔₑ₅²\) with \ (= mₚ/mₑ\). A simple geometrical refinement \ (Rₒₔₑ₅ = rₕ₀₋/3\), where \ (\) is the golden ratio, then yields \ (₃₋^-1 = \, 9 / (² rₕ₀₋²) \), giving \ (₃₋^-1 137. 02\) in close agreement with the experimental value \ (137. 036\) without any continuous fit parameter. We analyse the assumptions, local robustness, and compatibility of this expression with the standard Schrödinger description of the hydrogen atom.
Cédric Laubscher (Wed,) studied this question.
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