# Chiral Anomaly Calculation in the Extended Coupled Rarita-Schwinger Mode

**Authors:** Stephen L. Adler, Pablo Pais

arXiv: 1903.06189 · 2019-06-05

## TL;DR

This paper recalculates the chiral anomaly in an extended coupled Rarita-Schwinger model with fermionic gauge invariance, finding a total anomaly five times the standard value, consistent with previous unextended model results.

## Contribution

It provides a detailed anomaly calculation in an extended Rarita-Schwinger model, clarifying the ghost and fermion loop contributions and confirming the total anomaly value.

## Key findings

- Total anomaly is 5 times the standard anomaly.
- Ghost contribution is -1 times the standard anomaly.
- Fermion loop contribution is 6 times the standard anomaly.

## Abstract

We recalculate the chiral anomaly in the Abelian gauge model in which a spin-$\frac{1}{2}$ field is directly coupled to a Rarita-Schwinger spin-$\frac{3}{2}$ field, using the extended theory in which there is an exact fermionic gauge invariance. Since the standard gauge fixing and ghost analysis applies to this theory, the ghost contribution to the chiral anomaly is $-1$ times the standard chiral anomaly for spin-$\frac{1}{2}$. Calculation of the fermion loop Feynman diagrams contributing to the coupled model anomaly gives a result of $6$ times the standard anomaly, so the total anomaly is $5$ times the standard anomaly. This agrees with the result obtained from the unextended model taking the ghost contribution there as $0$, corresponding to a non-propagating ghost arising from exponentiating the second class constraint determinant, together with the fermion loop anomaly contribution in the unextended model of $5$ times the standard anomaly.

## Full text

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## Figures

2 figures with captions in the complete paper: https://tomesphere.com/paper/1903.06189/full.md

## References

11 references — full list in the complete paper: https://tomesphere.com/paper/1903.06189/full.md

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Source: https://tomesphere.com/paper/1903.06189