Anyonic phase transitions in the 1D extended Hubbard model with fractional statistics
ORAL
Abstract
Recent advances in quantum technology allow the realization of "lattice anyons", which have enjoyed large interest as particles which interpolate between bosonic and fermionic behavior. We now study the interplay of such fractional statistics with strong correlations in the one-dimensional extended Anyon Hubbard model at unit filling by developing a tailored bosonization theory and employing large-scale numerical simulations. The resulting quantum phase diagram shows several distinct phases, which show an interesting transition through a multicritical point. As the anyonic exchange phase is tuned from bosons to fermions, an intermediate coupling phase changes from Haldane insulator to a dimerized phase. Detailed results on the universality classes of the phase transitions are presented.
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Publication: Preprint arXiv 2410.00089 (2024).
Presenters
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Sebastian Eggert
University of Kaiserslautern-Landau
Authors
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Sebastian Eggert
University of Kaiserslautern-Landau
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Martin Bonkhoff
Theoretische Physik, Univ. Hamburg,
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Kevin Jägering
University of Kaiserslautern-Landau
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Shi-Jie Hu
Beijing Computational Science Research Center
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Axel Pelster
University of Kaiserslautern-Landau
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Imke Schneider
University of Kaiserslautern-Landau