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- W2618667467 endingPage "184" @default.
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- W2618667467 abstract "Heat-loving quantum oscillations The shape of the Fermi surface in a conductor can be gleaned through quantum oscillations—periodic changes in transport properties as an external magnetic field is varied. Like most quantum properties, the phenomenon can usually be observed only at very low temperatures. Krishna Kumar et al. report quantum oscillations in graphene that do not go away even at the temperature of boiling water. Although “ordinary,” low-temperature quantum oscillations die away, another oscillatory behavior sets in that is extremely robust to heating. These resilient oscillations appear only in samples in which graphene is nearly aligned with its hexagonal boron nitride substrate, indicating that they are caused by the potential of the moiré superlattice that forms in such circumstances. Science , this issue p. 181" @default.
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- W2618667467 date "2017-07-14" @default.
- W2618667467 modified "2023-10-17" @default.
- W2618667467 title "High-temperature quantum oscillations caused by recurring Bloch states in graphene superlattices" @default.
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- W2618667467 doi "https://doi.org/10.1126/science.aal3357" @default.
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