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May 8, 2026Journal of High Energy Physics1 citationsOpen Access

Defect entanglement entropy for superconformal monodromy defects

ACA. ContiUniversidad de OviedoYLYolanda LozanoUniversidad de OviedoFRFilippos RogdakisUniversity of Crete

Key Points

  • This research aims to compute the defect entanglement entropy for superconformal monodromy defects in holographic theories and relate it to field theory characteristics.
  • Computed defect entanglement entropy for co-dimension two defects in various dimensions of holographic theories.
  • Related universal part of the defect entanglement entropy to the characteristics of the defect conformal field theory.
  • Established that the universal part of the defect entanglement entropy does not decrease along a renormalization group flow, differing from bulk theories.
  • Provided explicit relationships between defect entanglement entropy and field theory data.

Abstract

A bstract We compute the defect entanglement entropy for co-dimension two superconformal monodromy defects in well known maximally symmetric holographic theories of various dimension. In each case we explicitly relate the universal part of the defect entanglement entropy to field theory data characterising the defect conformal field theory. We provide evidence that, unlike in the bulk theories in which the defects reside, the universal part of the defect entanglement entropy does not necessarily decrease along a renormalisation group flow.

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Cite This Study

Conti et al. (2026) studied this question.

synapsesocial.com/papers/69fd7ee0bfa21ec5bbf07201https://doi.org/10.1007/jhep05(2026)036
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