Abstract
Levin-Wen string-net models provide a construction of (2+1)D topologically ordered phases of matter with anyonic localized excitations described by the Drinfeld center of a unitary fusion category. Anyon condensation is a mechanism for phase transitions between (2+1)D topologically ordered phases. We construct an extension of Levin-Wen models in which tuning a parameter implements anyon condensation. We also describe the classification of anyons in Levin-Wen models via representation theory of the tube algebra, and use a variant of the tube algebra to classify low-energy localized excitations in the condensed phase.
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Christian, J., Green, D., Huston, P., & Penneys, D. (2023). A lattice model for condensation in Levin-Wen systems. Journal of High Energy Physics, 2023(9). https://doi.org/10.1007/JHEP09(2023)055
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