Higher-derivative supersymmetric effective field theories
Abstract
In this paper we study higher-derivative supersymmetric effective field theories focusing on the systematic procedure for the elimination of ghosts from the spectrum. Particular attention is paid to the auxiliary fields, for which the higher-derivative terms induce non-algebraic equations of motion. By employing field redefinitions or the reduction of order procedure (both in component and superfield language) we show that the auxiliary fields remain non-dynamical in the EFT and that on shell they give rise to both derivative and non-derivative corrections to the scalar action. These methods are applied to the search for a SUSY embedding of the DBI action and to the dimensional reduction of HD terms for the K\"ahler moduli in type IIB string compactifications.
Cite
@article{arxiv.2409.08984,
title = {Higher-derivative supersymmetric effective field theories},
author = {Osmin Lacombe and Lorenzo Paoloni and Francisco G. Pedro},
journal= {arXiv preprint arXiv:2409.08984},
year = {2025}
}
Comments
41 pages, comments are welcome. v2: published version, minor typos corrected