# Exploring the Abelian 4D, $\mathcal{N}$ = 4 Vector-Tensor Supermultiplet   and Its Off-Shell Central Charge Structure

**Authors:** S. James Gates, Jr., Kory Stiffler

arXiv: 1812.04236 · 2025-04-28

## TL;DR

This paper investigates the structure of an abelian 4D,   vector-tensor supermultiplet, revealing its decomposition, simplified central charge structure, and symmetry replacement, with open-source computational details provided.

## Contribution

It introduces the off-shell central charge structure of the 4D,  vector-tensor supermultiplet and compares it to the parent supermultiplet, highlighting symmetry changes and algebraic simplifications.

## Key findings

- Decomposition into 2 off-shell 2 supermultiplets.
- Simpler central charge structure due to symmetry replacement.
- Open-source Mathematica code for calculations.

## Abstract

An abelian 4D, $\mathcal{N}$ = 4 vector supermultiplet allows for a duality transformation to be applied to one of its spin-0 states. The resulting theory can be described as an abelian 4D, $\mathcal{N}$ = 4 vector-tensor supermultiplet. It is seen to decompose into a direct sum of an off-shell 4D, $\mathcal{N}$ = 2 vector supermultiplet and an off-shell 4D, $\mathcal{N}$ = 2 tensor supermultiplet. The commutator algebra of the other two supersymmetries are still found to be on-shell. However, the central charge structure in the resulting 4D, $\mathcal{N}$ = 4 vector-tensor supermultiplet is considerably simpler that that of the parent abelian 4D, $\mathcal{N}$ = 4 vector supermultiplet. This appears to be due to the replacement of the usual SO(4) symmetry associated with the abelian 4D, $\mathcal{N}$ = 4 vector supermultiplet being replaced by a GL(2,$\mathbb{R}$)$\otimes$GL(2,$\mathbb{R}$) symmetry in the 4D, $\mathcal{N}$ = 4 vector-tensor supermultiplet. The $Mathematica$ code detailing the calculations is available open-source at the HEPTHools Data Repository on GitHub.

## Full text

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## References

29 references — full list in the complete paper: https://tomesphere.com/paper/1812.04236/full.md

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Source: https://tomesphere.com/paper/1812.04236