Entanglement entropy of the large $N$ Wilson-Fisher conformal field theory

ORAL

Abstract

We compute the entanglement entropy of the Wilson-Fisher conformal field theory (CFT) in 2+1 dimensions with O($N$) symmetry in the limit of large $N$ for general entanglement geometries. We show that the leading large $N$ result can be obtained from the entanglement entropy of $N$ Gaussian scalar fields with their mass determined by the geometry. For a few geometries, the universal part of the entanglement entropy of the Wilson-Fisher CFT equals that of a CFT of $N$ massless scalar fields. However, in most cases, these CFTs have a distinct universal entanglement entropy even at $N=\infty$. Notably, for a semi-infinite cylindrical region it scales as $N^0$ in the Wilson-Fisher theory, in stark contrast to the $N$-linear result of the Gaussian fixed point.

*NSF under Grant DMR-1360789, MURI grant W911NF-14-1-0003 from ARO, Discovery Grant from NSERC, NSF grant PHY-1066293

Authors

  • Seth Whitsitt

    • Harvard Univ
  • William Witczak-Krempa

    • University of Montreal
    • Université de Montréal
  • Subir Sachdev

    • Harvard Univ
    • Department of Physics, Harvard University
    • Harvard University