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Classification and detection of symmetry fractionalization in chiral spin liquids
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abstract
In this work we study the crystal symmetry fractionalization in chiral spin liquids with the chiral-semion topological order. We show that if such a chiral spin liquid is realized in a two-dimensional lattice model with odd number of spin-$\frac12$ per unit cell and the state preserves spin rotation symmetry and translation symmetries, the semion excitation must carry both half-integer spin and fractional crystal quantum numbers. As a result, only a unique symmetry enriched topological phase can be realized in chiral spin liquids in a spin-$\frac12$ kagome lattice model. These fractional symmetry quantum numbers are confirmed numerically using ground state wave functions obtained with the density matrix renormalization group method.
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Discrete Shift and Polarization from Response to Symmetry Defects in Interacting Topological Phases
DMRG simulations of an interacting Hofstadter model show quantized defect-bound charges, yielding discrete shift 1/2 and polarization 1/2 in the Chern phase, and shift 1 in the CDW phase.
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