Journal
APPLIED PHYSICS LETTERS
Volume 93, Issue 24, Pages -Publisher
AMER INST PHYSICS
DOI: 10.1063/1.3049600
Keywords
carbon; Fermi level; magnetic structure; nanostructured materials; thin films; tunnelling
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Funding
- Flemish Science Foundation (FWO-VI)
- Belgian Science Policy
- NSERC [OGP0121756]
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We show that the angular range of the transmission through magnetic barrier structures can be efficiently controlled in single-layer and bilayer graphenes and this renders the structure's efficient wavevector filters. As the number of magnetic barriers increases, this range shrinks, the gaps in the transmission versus energy become wider, and the conductance oscillates with the Fermi energy.
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