English

Anomalies, Renormalization Group Flows, and the a-Theorem in Six-Dimensional (1,0) Theories

High Energy Physics - Theory 2018-02-15 v2

Abstract

We establish a linear relation between the aa-type Weyl anomaly and the 't Hooft anomaly coefficients for the RR-symmetry and gravitational anomalies in six-dimensional (1,0)(1,0) superconformal field theories. For RG flows onto the tensor branch, where conformal symmetry is spontaneously broken, supersymmetry relates the anomaly mismatch Δa\Delta a to the square of a four-derivative interaction for the dilaton. This establishes the aa-theorem for all such flows. The four-derivative dilaton interaction is in turn related to the Green-Schwarz-like terms that are needed to match the 't Hooft anomalies on the tensor branch, thus fixing their relation to Δa\Delta a. We use our formula to obtain exact expressions for the aa-anomaly of NN small E8E_8 instantons, as well as NN M5-branes probing an orbifold singularity, and verify the aa-theorem for RG flows onto their Higgs branches. We also discuss aspects of supersymmetric RG flows that terminate in scale but not conformally invariant theories with massless gauge fields.

Keywords

Cite

@article{arxiv.1506.03807,
  title  = {Anomalies, Renormalization Group Flows, and the a-Theorem in Six-Dimensional (1,0) Theories},
  author = {Clay Cordova and Thomas T. Dumitrescu and Kenneth Intriligator},
  journal= {arXiv preprint arXiv:1506.03807},
  year   = {2018}
}

Comments

38 pages, 3 figures; added references and an appendix