English

Dilaton Effective Action with $\mathcal{N}=1$ Supersymmetry

High Energy Physics - Theory 2015-06-18 v1

Abstract

We clarify the structure of the four-dimensional low-energy effective action that encodes the conformal and U(1)U(1) R-symmetry anomalies in an N=1\mathcal{N}=1 supersymmetric field theory. The action depends on the dilaton, τ\tau, associated with broken conformal symmetry, and the Goldstone mode, β\beta, of the broken U(1)U(1) R-symmetry. We present the action for general curved spacetime and background gauge field up to and including all possible four-derivative terms. The result, constructed from basic principles, extends and clarifies the structure found by Schwimmer and Theisen in arXiv:1011.0696 using superfield methods. We show that the Goldstone mode β\beta does not interfere with the proof of the four-dimensional aa-theorem based on 222 \to 2 dilaton scattering. In fact, supersymmetry Ward identities ensure that a proof of the aa-theorem can also be based on 222 \to 2 Goldstone mode scattering when the low-energy theory preserves N=1\mathcal{N}=1 supersymmetry. We find that even without supersymmetry, a Goldstone mode for any broken global U(1)U(1) symmetry cannot interfere with the proof of the four-dimensional aa-theorem.

Keywords

Cite

@article{arxiv.1312.2925,
  title  = {Dilaton Effective Action with $\mathcal{N}=1$ Supersymmetry},
  author = {Nikolay Bobev and Henriette Elvang and Timothy M. Olson},
  journal= {arXiv preprint arXiv:1312.2925},
  year   = {2015}
}

Comments

18 pages

R2 v1 2026-06-22T02:24:53.706Z