English

Bootstrapping Smooth Conformal Defects in Chern-Simons-Matter Theories

High Energy Physics - Theory 2024-04-23 v2

Abstract

The expectation value of a smooth conformal line defect in a CFT is a conformal invariant functional of its path in space-time. For example, in large NN holographic theories, these fundamental observables are dual to the open string partition function in AdS. In this paper, we develop a bootstrap method for studying them and apply it to conformal line defects in Chern-Simons matter theories. In these cases, the line bootstrap is based on three minimal assumptions -- conformal invariance of the line defect, large NN factorization, and the spectrum of the two lowest-lying operators at the end of the line. On the basis of these assumptions, we solve the one-dimensional CFT on the line and systematically compute the defect expectation value in an expansion around the straight line. We find that the conformal symmetry of a straight defect is insufficient to fix the answer. Instead, imposing the conformal symmetry of the defect along an arbitrary curved line leads to a functional bootstrap constraint. The solution to this constraint is found to be unique.

Keywords

Cite

@article{arxiv.2312.17132,
  title  = {Bootstrapping Smooth Conformal Defects in Chern-Simons-Matter Theories},
  author = {Barak Gabai and Amit Sever and De-liang Zhong},
  journal= {arXiv preprint arXiv:2312.17132},
  year   = {2024}
}

Comments

33 pages. v2: Typos corrected. JHEP version

R2 v1 2026-06-28T14:03:53.064Z