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Aad, G., Abbott, B., Abbott, D.C., Abeling, K., Abidi, S.H., Aboulhorma, A., et al. (2023) Measurement of the Higgs Boson Mass in the H → ZZ* → 4ℓ Decay Channel Using 139 fb−1 of = 13 Tev Pp Collisions Recorded by the ATLAS Detector at the LHC. Physics Letters B, 843, Article ID: 137880.
https://doi.org/10.1016/j.physletb.2023.137880
has been cited by the following article:
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TITLE:
A Possible Solution of the Renormalization Paradox: From the Hypothesis of “Structure-Particle” to the Higgs Boson Mass Passing through a Finite Lattice of Propagators at Non-Divergent Integration
AUTHORS:
Giovanni Guido
KEYWORDS:
IQuO, Renormalization, Electromagnetic Mass, Compton Wavelength, Lattice, Bosons
JOURNAL NAME:
Journal of High Energy Physics, Gravitation and Cosmology,
Vol.11 No.3,
July
28,
2025
ABSTRACT: We show a possible “solution” to the paradoxical aspect of the renormalization by defining the mass m as the oscillation frequency ω assigned to a particle built by a closed set of coupled field oscillators (Structure-Particle). This eliminates divergences in calculations of QED and interactions with W bosons because the mass (frequency) no longer has infinite values, the structure-particle has the finite dimension of a Compton length, and Feynman diagrams are replaced by finite lattices of non-divergent propagators in wavelengths. After, we show that the coupling of the oscillators at vertices of a W-lattice builds the geometric structure of W-boson and Higgs’s boson and, in final, by the geometric relations between them, we calculate the mass of Higgs boson, so demonstrating the validity of structure Hypothesis.