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May 10, 2026SciPost Physics0 citationsOpen Access

Boundary critical phenomena in the quantum Ashkin-Teller model

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YLY LiuNCNatalia ChepigaYFYoshiki Fukusumi

Key Points

  • This research aims to explore the boundary critical phenomena in the quantum Ashkin-Teller model.
  • Utilized boundary conformal field theory and DMRG simulations.
  • Constructed microscopic lattice boundary terms and identified stable conformal boundary conditions.
  • Validated theoretical identifications through finite-size spectroscopy and symmetry analysis.
  • Confirmed consistency with D_4 symmetry and Kramers-Wannier duality.
  • Proposed a global phase diagram for boundary criticality based on identified fixed points.

Abstract

We investigate the boundary critical phenomena of the one-dimensional quantum Ashkin-Teller model using boundary conformal field theory and density matrix renormalization group (DMRG) simulations. Based on the Z₂ ℤ 2 -orbifold of the c=1 c = 1 compactified boson boundary conformal field theory, we construct microscopic lattice boundary terms that renormalize to the stable conformal boundary conditions, utilizing simple current extensions and the underlying SU (2) S U (2) symmetry to explicitly characterize the four-state Potts point. We validate these theoretical identifications via finite-size spectroscopy of the lattice energy spectra, confirming their consistency with D₄ D 4 symmetry and Kramers-Wannier duality. Finally, we discuss the boundary renormalization group flows among these identified fixed points to propose a global phase diagram for the boundary criticality.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/6a002162c8f74e3340f9c305https://doi.org/10.21468/scipostphys.20.5.130
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