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May 10, 2026Journal of High Energy Physics2 citationsOpen Access

Holographic entanglement entropy in quiver theories

DCDimitrios ChatzisAFAli FatemiabhariMGMauro Giliberti

Key Points

  • This work aims to analyze entanglement entropy in four-dimensional N=1 linear quiver SCFTs under various conditions.
  • Calculated entanglement entropy for different Ryu-Takayanagi embeddings.
  • Explored internal coordinates related to quiver degrees of freedom.
  • Utilized numerical optimization of splines on triangulations for minimal configurations.
  • Identified dependencies of entanglement entropy on gauge degrees of freedom.
  • Confirmed findings of phase transitions in the entanglement entropy.
  • Provided new insights into partial deconfinement effects.

Abstract

A bstract This work presents a study of the entanglement entropy (EE) in a class of four-dimensional N N = 1 linear quiver SCFTs deformed by the presence of a VEV. We review the holographic backgrounds dual to these theories, and calculate the EE for different Ryu-Takayanagi embeddings. We allow the embeddings to explore, in addition to the usual spatial direction, the internal coordinate z, associated with the quiver degrees of freedom. Via the numerical optimization of splines on triangulations, we find the minimal configuration and the value of the EE for the different embeddings and quiver parameters. Our results agree with previous studies showcasing phase transitions in the EE. We also provide novel results illuminating the dependence of the EE on the fundamental and gauge degrees of freedom, signaling partial deconfinement, which are worthy of further study.

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Cite This Study

Chatzis et al. (2026) studied this question.

synapsesocial.com/papers/6a0020cec8f74e3340f9bac9https://doi.org/10.1007/jhep05(2026)062
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