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Multi wavefunction overlap and multientropy for topological ground states in (2+1) dimensions

  • Bowei Liu
  • , Junjia Zhang
  • , Shuhei Oyama
  • , Yuya Kusuki
  • , Shinsei Ryu

Publications: Contribution to journalArticlePeer Reviewed

Abstract

Multi-wavefunction overlaps -- generalizations of the quantum mechanical inner product for more than two quantum many-body states -- are valuable tools for studying many-body physics. In this paper, we investigate the multi-wavefunction overlap of (2+1)-dimensional gapped ground states, focusing particularly on symmetry-protected topological (SPT) states. We demonstrate how these overlaps can be calculated using the bulk-boundary correspondence and (1+1)-dimensional edge theories, specifically conformal field theory. When applied to SPT phases, we show that the topological invariants, which can be thought of as discrete higher Berry phases, can be extracted from the multi-wavefunction overlap of four ground states with appropriate symmetry actions. Additionally, we find that the multi-wavefunction overlap can be expressed in terms of the realignment of reduced density matrices. Furthermore, we illustrate that the same technique can be used to evaluate the multi-entropy -- a quantum information theoretical quantity associated with multi-partition of many-body quantum states -- for (2+1)-dimensional gapped ground states. Combined with numerics, we show that the difference between multi-entropy for tripartition and second Rényi entropies is bounded from below by (ctot/4)ln2 where ctot is the central charge of ungappable degrees of freedom. To calculate multi-entropy numerically for free fermion systems (such as Chern insulators), we develop the correlator method for multi-entropy.
Original languageEnglish
Article number125160
Number of pages16
JournalPhysical Review B
Volume112
Issue number12
DOIs
Publication statusPublished - 25 Sept 2025

Austrian Fields of Science 2012

  • 103025 Quantum mechanics
  • 103036 Theoretical physics

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