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η -pairing in Hubbard models: From spectrum generating algebras to quantum many-body scars

Author(s): Moudgalya, Sanjay; Regnault, Nicolas; Bernevig, B Andrei

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Abstract: We revisit the η-pairing states in Hubbard models and explore their connections to quantum many-body scars to discover a universal scars mechanism. η-pairing occurs due to an algebraic structure known as a Spectrum Generating Algebra (SGA), giving rise to equally spaced towers of eigenstates in the spectrum. We generalize the original η-pairing construction and show that several Hubbard-like models on arbitrary graphs exhibit SGAs, including ones with disorder and spin-orbit coupling. We further define a Restricted Spectrum Generating Algebra (RSGA) and give examples of perturbations to the Hubbard-like models that preserve an equally spaced tower of the original model as eigenstates. The states of the surviving tower exhibit a sub-thermal entanglement entropy, and we analytically obtain parameter regimes for which they lie in the bulk of the spectrum, showing that they are exact quantum many-body scars. The RSGA framework also explains the equally spaced towers of eigenstates in several well-known models of quantum scars, including the Affleck-Kennedy-Lieb-Tasaki model.
Publication Date: 20-Aug-2020
Electronic Publication Date: 20-Aug-2020
Citation: η -pairing in Hubbard models: From spectrum generating algebras to quantum many-body scars. Physical Review B, 102 (8), 10.1103/physrevb.102.085140
DOI: doi:10.1103/physrevb.102.085140
ISSN: 2469-9950
EISSN: 2469-9969
Language: en
Type of Material: Journal Article
Journal/Proceeding Title: Physical Review B
Version: Author's manuscript



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