Nonlinear self-duality for arbitrary spin, superspin, and supersymmetry type
Abstract
We review the general formalism of duality rotations for -extended (super)conformal gauge multiplets of arbitrary (super)spin in four dimensions, with . Self-dual models for a vector field () and for and vector supermultiplets are naturally formulated on general (super)gravity backgrounds. For all other (super)spin values, the corresponding self-dual systems are realised on arbitrary conformally flat backgrounds. Every duality-invariant model is demonstrated to be self-dual with respect to a Legendre transformation. Methods are proposed to generate such self-dual models including superconformal ones. We show that every model for self-dual nonlinear electrodynamics admits a higher-spin extension. Throughout the review, we make use of the formalism of conformal (super)space, that is the geometric setting to describe the gauge theory of the (super)conformal group.
Cite
@article{arxiv.2602.04336,
title = {Nonlinear self-duality for arbitrary spin, superspin, and supersymmetry type},
author = {Sergei M. Kuzenko},
journal= {arXiv preprint arXiv:2602.04336},
year = {2026}
}
Comments
73 pages, Review based on arXiv:2312.07242, arXiv:2308.10660, arXiv:2305.16029, arXiv:2107.02001