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Universal entanglement spectrum in gapless symmetry protected topological states
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Quantum entanglement marks a definitive feature of topological states. However, the entanglement spectrum remains insufficiently explored for topological states without a bulk energy gap. Using a combination of field theory and numerical techniques, we accurately calculate and analyze the entanglement spectrum of gapless symmetry protected topological states in one dimension. We highlight that the universal entanglement spectrum not only encodes the nontrivial edge degeneracy, generalizing the Li-Haldane conjecture to gapless topological states, but also contains the operator content of the underlying boundary conformal field theory. This implies that the bulk wave function can act as a fingerprint of both quantum criticality and topology in gapless symmetry protected topological states. We also identify a symmetry enriched conformal boundary condition that goes beyond the conventional conformal boundary condition.
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Noninvertible Symmetry-Enriched Quantum Critical Point
A new class of gapless critical points in 1D, enriched by the noninvertible Rep(D8) symmetry, is constructed via the Kennedy-Tasaki duality and characterized by Ising and compact boson CFTs.
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