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Quantum properties of a cyclic structure based on tripolar fields

Authors
Journal
Physica D Nonlinear Phenomena
0167-2789
Publisher
Elsevier
Publication Date
Volume
226
Issue
2
Identifiers
DOI: 10.1016/j.physd.2006.11.009
Keywords
  • Pattern Formation
  • Self-Organisation
  • Symmetry Breaking Mechanisms
  • Quantum–Classical Analogies
Disciplines
  • Physics

Abstract

Abstract The properties of cyclic structures (toroidal oscillators) based on classical tripolar (colour) fields are discussed, in particular, those of a cyclic structure formed of three colour singlets spinning around a ring-closed axis. It is shown that the helicity and handedness of this structure can be related to the quantum properties of the electron. The symmetry of this structure corresponds to the complete cycle of 2 3 π -rotations of its constituents, which leads to the exact overlapping of the paths of its three complementary coloured constituents, making the system dynamically colourless. Its gyromagnetic ratio is estimated to be g ≈ 2 , which agrees with the Landé g-factor for the electron.

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