Critical Lattice Model for a Haagerup Conformal Field Theory

Robijn Vanhove, Laurens Lootens, Maarten Van Damme, Ramona Wolf, Tobias J. Osborne, Jutho Haegeman, and Frank Verstraete
Phys. Rev. Lett. 128, 231602 – Published 10 June 2022

Abstract

We use the formalism of strange correlators to construct a critical classical lattice model in two dimensions with the Haagerup fusion category H3 as input data. We present compelling numerical evidence in the form of finite entanglement scaling to support a Haagerup conformal field theory (CFT) with central charge c=2. Generalized twisted CFT spectra are numerically obtained through exact diagonalization of the transfer matrix, and the conformal towers are separated in the spectra through their identification with the topological sectors. It is further argued that our model can be obtained through an orbifold procedure from a larger lattice model with input Z(H3), which is the simplest modular tensor category that does not admit an algebraic construction. This provides a counterexample for the conjecture that all rational CFT can be constructed from standard methods.

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  • Received 19 October 2021
  • Revised 22 February 2022
  • Accepted 4 April 2022

DOI:https://doi.org/10.1103/PhysRevLett.128.231602

© 2022 American Physical Society

Physics Subject Headings (PhySH)

Statistical Physics & ThermodynamicsQuantum Information, Science & Technology

Authors & Affiliations

Robijn Vanhove1, Laurens Lootens1, Maarten Van Damme1, Ramona Wolf2,3, Tobias J. Osborne3, Jutho Haegeman1, and Frank Verstraete1

  • 1Department of Physics and Astronomy, Ghent University, Krijgslaan 281, S9, B-9000 Ghent, Belgium
  • 2Institute for Theoretical Physics, ETH Zürich, Wolfgang-Pauli-Str. 27, 8093 Zürich, Switzerland
  • 3Institut für Theoretische Physik, Leibniz Universität Hannover, Appelstr. 2, 30167 Hannover, Germany

See Also

Numerical Evidence for a Haagerup Conformal Field Theory

Tzu-Chen Huang, Ying-Hsuan Lin, Kantaro Ohmori, Yuji Tachikawa, and Masaki Tezuka
Phys. Rev. Lett. 128, 231603 (2022)

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Vol. 128, Iss. 23 — 10 June 2022

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