Positivity in massive spin-3/2 EFTs and the Planck-suppressed neighbourhood of supergravity

Loading...
Thumbnail Image

Journal Title

Journal ISSN

Volume Title

Publisher

Springer Nature

Abstract

It is well known that a strictly massless spin-3/2 particle can interact consistently only within supergravity. Recently, positivity arguments have shown that an effective field theory of a massive Majorana spin-3/2 particle admits an arbitrarily small mass only if a graviton is present and the four-fermion contact interactions are tuned to the values dictated by = 1 supergravity. In this work, we investigate how this limit is approached at finite mass. Assuming that the graviton t-channel pole can be discarded, we derive non-forward, tree-level dispersive bounds on massive spin-3/2 contact operators and determine the region of effective couplings consistent with unitarity and analyticity. For sufficiently small m, we find that the allowed parameter space forms a bounded, Planck-suppressed neighbourhood of the supergravity point, defined by the supergravity values of the four-fermion couplings. The supergravity point lies on the boundary of this region. In the regime m ≪ MPl, the volume of the allowed region scales parametrically as and shrinks to zero as m → 0, smoothly reproducing the massless-limit results. The allowed region becomes unbounded when mass approaches the Planck scale. We further analyze the effect of including additional light scalar and pseudo-scalar degrees of freedom, motivated by the Polonyi model, and find that their couplings are also bounded in a way similar to the contact couplings and that it doesn’t enlarge the allowed contact coupling space.

Description

Citation

Journal of High Energy Physics, 2026(08), 265.

Collections

Endorsement

Review

Supplemented By

Referenced By