arXiv · 1101.2088
Magnetic field induced localization in carbon nanotubes
Abstract
The electronic spectra of long carbon nanotubes (CNTs) can, to a very good approximation, be obtained using the dispersion relation of graphene with both angular and axial periodic boundary conditions. In short CNTs one must account for the presence of open ends, which may give rise to states localized at the edges. We show that when a magnetic field is applied parallel to the tube axis, it modifies both momentum quantization conditions, causing hitherto extended states to localize near the ends. This localization is gradual and initially the involved states are still conducting. Beyond a threshold value of the magnetic field, which depends on the nanotube chirality and length, the localization is complete and the transport is suppressed.
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Magdalena Marganska, Miriam del Valle, Sung Ho Jhang, Christoph Strunk, Milena Grifoni. 2011-01-11. Magnetic field induced localization in carbon nanotubes. https://doi.org/10.1103/physrevb.83.193407
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