arXiv · 0801.1861
Cyclotron resonance in bilayer graphene
Abstract
We present the first measurements of cyclotron resonance of electrons and holes in bilayer graphene. In magnetic fields up to B = 18 T we observe four distinct intraband transitions in both the conduction and valence bands. The transition energies are roughly linear in B between the lowest Landau levels, whereas they follow \sqrt{B} for the higher transitions. This highly unusual behavior represents a change from a parabolic to a linear energy dispersion. The density of states derived from our data generally agrees with the existing lowest order tight binding calculation for bilayer graphene. However in comparing data to theory, a single set of fitting parameters fails to describe the experimental results.
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E. A. Henriksen, Z. Jiang, L. -C. Tung, M. E. Schwartz, M. Takita, Y. -J. Wang, P. Kim, H. L. Stormer. 2008-02-23. Cyclotron resonance in bilayer graphene. https://doi.org/10.1103/physrevlett.100.087403
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