preprint Open access

The Ledger Geometry of Magnetic Moments: A Quantized Dimensional Ledger Derivation of the Electron and Muon g-2 Factors

  • Zenodo (CERN European Organization for Nuclear Research)
  • European Organization for Nuclear Research
Research footprint

At a glance

Citations
0
References
0
Comments
0
Paper overview

Öz

The anomalous magnetic moments of the electron and muon are among the mostprecisely measured quantities in physics. Their Standard Model description requiresextremely high-order quantum electrodynamics (QED) calculations. The electron gfactorhas now been computed through the α5 term, requiring 12,672 Feynman diagramsspanning QED, electroweak, and hadronic loop contributions. In this paper,we present a geometric–oscillatory derivation based on the Quantized DimensionalLedger (QDL), a framework in which all physical quantities reduce to Length (L) andFrequency (F). Within QDL, the anomalous g-factor arises not from a perturbativeexpansion but from a torsion–curvature resonance inside the 3L+2F dimensional volume,referred to as the Quantized Dimensional Cell (QDC). The anomaly is expressedas a ratio of a small torsional frequency shift to a canonical intrinsic frequency, eliminatingthe need for multi-loop expansions. Using the ledger formulation, we retrodictthe electron and muon anomalous magnetic moments at the level of previously documented QDL residuals: approximately 0.5σ for the electron and 0.15σ for the muon, consistent with CODATA 2022 and the 2025 Fermilab muon measurement. This result suggests that a purely geometric account of magnetic moments is possible as an exploratory, complementary description alongside standard quantum field theoretictreatments, rather than a replacement for them.

Record transparency

Publication details

DOI
10.5281/zenodo.17693060
OpenAlex
W7106565943
Document type
preprint
Language
EN
Source
Zenodo (CERN European Organization for Nuclear Research)
Last metadata update
Community

Comments

Oturum Açın to join the discussion.

  1. No comments yet. Start the discussion.