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Symmetry-protected topological phase transitions and robust chiral order on a tunable zigzag lattice

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arxiv 2011.06556 v1 pith:45TBLI7C submitted 2020-11-12 cond-mat.quant-gas cond-mat.str-elquant-ph

Symmetry-protected topological phase transitions and robust chiral order on a tunable zigzag lattice

classification cond-mat.quant-gas cond-mat.str-elquant-ph
keywords phasesymmetry-protectedtopologicaltransitionschirallargelatticeprovides
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Symmetry fractionalization, generating a large amount of symmetry-protected topological phases, provides scenarios for continuous phase transitions different from spontaneous symmetry breaking. However, it is hard to detect these symmetry-protected topological phase transitions experimentally. Motivated by the recent development of highly tunable ultracold polar molecules, we show that the setup in a zigzag optical lattice of this system provides a perfect platform to realize symmetry-protected topological phase transitions. By using infinite time-evolving block decimation, we obtain the phase diagram in a large parameter regions and find another scheme to realize the long-sought vector chiral phase, which is robust from quantum fluctuations. We discuss the existence of the chiral phase by an effective field analysis.

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