4.4 Article

Surface defect, anomalies and b-extremization

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 11, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP11(2021)122

关键词

Anomalies in Field and String Theories; Boundary Quantum Field Theory; Conformal Field Theory; Supersymmetric Gauge Theory

资金

  1. Center for Mathematical Sciences and Applications
  2. Center for the Fundamental Laws of Nature at Harvard University

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This study investigates new types of anomalies in conformal field theories with surface defects. By explicitly deriving and analyzing the scalar theory under defect RG flow, the b-theorem and a universal relation between the b-anomaly and U(1)(r) symmetry's 't Hooft anomaly are confirmed. Additionally, the b-extremization principle is established as a powerful tool for extracting the b-anomaly of strongly coupled surface defects.
Quantum field theories (QFT) in the presence of defects exhibit new types of anomalies which play an important role in constraining the defect dynamics and defect renormalization group (RG) flows. Here we study surface defects and their anomalies in conformal field theories (CFT) of general spacetime dimensions. When the defect is conformal, it is characterized by a conformal b-anomaly analogous to the c-anomaly of 2d CFTs. The b-theorem states that b must monotonically decrease under defect RG flows and was proven by coupling to a spurious defect dilaton. We revisit the proof by deriving explicitly the dilaton effective action for defect RG flow in the free scalar theory. For conformal surface defects preserving N = (0, 2) supersymmetry, we prove a universal relation between the b-anomaly and the 't Hooft anomaly for the U(1)(r) symmetry. We also establish the b-extremization principle that identifies the superconformal U(1)(r) symmetry from N = (0, 2) preserving RG flows. Together they provide a powerful tool to extract the b-anomaly of strongly coupled surface defects. To illustrate our method, we determine the b-anomalies for a number of surface defects in 3d, 4d and 6d SCFTs. We also comment on manifestations of these defect conformal and 't Hooft anomalies in defect correlation functions.

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