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TMF, 2021 Volume 209, Number 2, Pages 224–242 (Mi tmf10093)

On the group-theoretical approach to relativistic wave equations for arbitrary spin

L. Nanni

Faculty of Natural Science, University of Ferrara, Ferrara, Italy

Abstract: Formulating a relativistic equation for particles with arbitrary spin remains an open challenge in theoretical physics. In this study, the main algebraic approaches used to generalize the Dirac and Kemmer–Duffin equations for arbitrary-spin particles are investigated. It is proved that an irreducible relativistic equation formulated using spin matrices satisfying the commutation relations of the anti-de Sitter group leads to inconsistent results, mainly as a consequence of the violation of unitarity and the appearance of a mass spectrum that does not reflect the physical reality of elementary particles. However, the introduction of subsidiary conditions resolves the problem of unitarity and restores the physical meaning of the mass spectrum. The equations obtained by these approaches are solved and the physical nature of the solutions is discussed.

Keywords: relativistic wave equation, higher spin, anti-de Sitter group, irreducible representations of Lorentz group.

PACS: 02.10.Ud, 02.20.Qs, 03.65.Pm.

Received: 06.03.2021
Revised: 21.04.2021

DOI: 10.4213/tmf10093


 English version:
Theoretical and Mathematical Physics, 2021, 209:2, 1507–1522

Bibliographic databases:
ArXiv: 2111.12554


© Steklov Math. Inst. of RAS, 2024