Supersymmetric electrodynamics of charged and neutral fermions in the extended Wheeler-Feynman approach
V.V.Tugai (Scientific Center of Physical Technologies), A.A.Zheltukhin, (Kharkov Institute of Physics, Technology)

TL;DR
This paper develops a supersymmetric classical action for charged and neutral fermions with anomalous magnetic moments, extending previous scalar particle models, and constructs a superfield formulation of Maxwell supermultiplet electrodynamics.
Contribution
It introduces a novel supersymmetric formulation for fermions with anomalous magnetic moments and generalizes scalar particle models to include charged and neutral fermions.
Findings
Formulation of a supersymmetric classical action for fermions
Construction of superfield electrodynamics from fermion world coordinates
Extension of scalar particle models to fermionic cases
Abstract
A supersymmetric formulation of the classical action of interacting charged and neutral fermions with arbitrary anomalous magnetic moment is considered. This formulation generalizes the known action for scalar charged particles investigated in papers by Fokker, Schwarzschild, Tetrode, Wheeler and Feynman. The superfield formulation of the electrodynamics of the Maxwell supermultiplet, constructed from the world coordinates of charged or neutral fermions is carried out basing on the proposed action.
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Taxonomy
TopicsQuantum and Classical Electrodynamics · Algebraic and Geometric Analysis · Particle physics theoretical and experimental studies
