Superconformal anomalies for string defects in six-dimensional $\mathcal{N} = (1,0)$ SCFTs
Abstract
We study the anomalies of two-dimensional BPS defects in six-dimensional superconformal field theories. Using a holographic description of these defects furnished by probe D4-branes in AdS solutions of ten-dimensional type IIA supergravity, we compute the two independent defect Weyl anomalies from the on-shell action for a spherical defect and defect sphere entanglement entropy. We find agreement between the holographic prediction for the defect A-type anomaly coming from the defect sphere free energy and the leading large contribution to the defect `t Hooft anomaly found using anomaly inflow. We also find agreement between the holographic computation of the expectation value of a surface operator wrapping a torus and the supersymmetric localization computation for a circular Wilson loop in super Yang-Mills theory on . Lastly, we holographically compute the defect gravitational anomaly from the Wess-Zumino action of the probe D4-brane, which provides a subleading large correction to the defect A-type anomaly.
Cite
@article{arxiv.2407.18049,
title = {Superconformal anomalies for string defects in six-dimensional $\mathcal{N} = (1,0)$ SCFTs},
author = {Fabio Apruzzi and Noppadol Mekareeya and Brandon Robinson and Alessandro Tomasiello},
journal= {arXiv preprint arXiv:2407.18049},
year = {2024}
}
Comments
35 pages, 3 figures