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- W2753165538 abstract "We study the infrared cyclotron resonance of high-mobility monolayer graphene encapsulated in hexagonal boron nitride, and simultaneously observe several narrow resonance lines due to interband Landau-level transitions. By holding the magnetic field strength $B$ constant while tuning the carrier density $n$, we find the transition energies show a pronounced nonmonotonic dependence on the Landau-level filling factor, $ensuremath{nu}ensuremath{propto}n/B$. This constitutes direct evidence that electron-electron interactions contribute to the Landau-level transition energies in graphene, beyond the single-particle picture. Additionally, a splitting occurs in transitions to or from the lowest Landau level, which is interpreted as a Dirac mass arising from coupling of the graphene and boron nitride lattices." @default.
- W2753165538 created "2017-09-15" @default.
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- W2753165538 date "2018-01-25" @default.
- W2753165538 modified "2023-10-12" @default.
- W2753165538 title "Many-Particle Effects in the Cyclotron Resonance of Encapsulated Monolayer Graphene" @default.
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- W2753165538 doi "https://doi.org/10.1103/physrevlett.120.047401" @default.
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