This monograph presents a phenomenological unification of elementary particle physics and atomic structure based on topological field theory. We propose that the physical vacuum acts as a superfluid chiral spinor condensate, analogous to the A-phase of helium-3. By modeling elementary particles as stable topological defects (knotted solitons) in this medium, we analytically derive fundamental constants that are treated as empirical parameters in the Standard Model. Key results include: (1) A rigorous geometric derivation of the proton-to-electron mass ratio (6pi⁵) (2) Calculation of the proton charge radius (0. 84 fm) based on vibrational stiffness (3) Resolution of the neutron magnetic moment anomaly through geometric charge separation; and (4) Correction of heavy atom radii (Carbon, Lead) based on a composite nucleus structure. These frames suggest that quantum numbers and atomic spectra are emergent properties of hydrodynamically coupled solitons. This upload contains both the English version and the Polish translation of the monograph in PDF for standard reading and Markdown for machine analysis and formula verification.
Artemiusz Emil Palla (Fri,) studied this question.