Abstract
The van Hove singularity in density of states generally exists in periodic systems due to the presence of saddle points of energy dispersion in momentum space. We introduce a new type of van Hove singularity in two dimensions, resulting from high-order saddle points and exhibiting power-law divergent density of states. We show that high-order van Hove singularity can be generally achieved by tuning the band structure with a single parameter in moiré superlattices, such as twisted bilayer graphene by tuning twist angle or applying pressure, and trilayer graphene by applying vertical electric field. Correlation effects from high-order van Hove singularity near Fermi level are also discussed.
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CITATION STYLE
Yuan, N. F. Q., Isobe, H., & Fu, L. (2019). Magic of high-order van Hove singularity. Nature Communications, 10(1). https://doi.org/10.1038/s41467-019-13670-9
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