Journal of High Energy Physics (Dec 2024)

An interacting, higher derivative, boundary conformal field theory

  • Christopher P. Herzog,
  • Yanjun Zhou

DOI
https://doi.org/10.1007/JHEP12(2024)133
Journal volume & issue
Vol. 2024, no. 12
pp. 1 – 41

Abstract

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Abstract We consider a higher derivative scalar field theory in the presence of a boundary and a classically marginal interaction. We first investigate the free limit where the scalar obeys the square of the Klein-Gordon equation. In precisely d = 6 dimensions, modules generated by d − 2 and d − 4 dimensional primaries merge to form a staggered module. We compute the conformal block associated with this module and show that it is a generalized eigenvector of the Casimir operator. Next we include the effect of a classically marginal interaction that involves four scalar fields and two derivatives. The theory has an infrared fixed point in d = 6 − ϵ dimensions. We compute boundary operator anomalous dimensions and boundary OPE coefficients at leading order in the ϵ expansion for the allowed conformal boundary conditions.

Keywords