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- W3046628823 abstract "Motivated by a recent experiment [J. H. Han et al., Phys. Rev. Lett. 122, 065303 (2019)], we investigate the many-body physics of interacting fermions in a synthetic Hall tube, using a state-of-the-art density-matrix renormalization-group numerical method. Since the interleg couplings of this synthetic Hall tube generate an interesting spin-tensor Zeeman field, exotic topological and magnetic properties occur. In particular, four quantum phases, such as nontopological spin-vector and -tensor paramagnetic insulators, and topological and nontopological spin-mixed paramagnetic insulators, are predicted by calculating the entanglement spectrum, entanglement entropies, energy gaps, and local magnetic orders with three spin vectors and five spin tensors. Moreover, the topologically magnetic phase transitions induced by the interaction as well as the interleg couplings are also revealed. Our results establish a way to explore many-body (topological) states induced by both the spiral spin-vector and -tensor Zeeman fields." @default.
- W3046628823 created "2020-08-07" @default.
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- W3046628823 date "2020-10-09" @default.
- W3046628823 modified "2023-10-10" @default.
- W3046628823 title "Synthetic Hall tube of interacting fermions" @default.
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- W3046628823 doi "https://doi.org/10.1103/physreva.102.043313" @default.
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